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  <title type="text">PLoS ONE Alerts: Cell Biology</title>
  <link rel="self" href="http://www.plosone.org/" title="PLoS ONE" />
  <author>
    <name>PLoS</name>
    <uri>http://www.plosone.org/</uri>
    <email>webmaster@plos.org</email>
  </author>
  <subtitle>Publishing science</subtitle>
  <id>info:doi/10.1371/feed.pone?category=Cell Biology</id>
  <rights>This work is licensed under a Creative Commons Attribution-Share Alike 3.0 License</rights>
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  <updated>2009-11-21T06:10:04Z</updated>
  <atom10:link xmlns:atom10="http://www.w3.org/2005/Atom" rel="hub" href="http://pubsubhubbub.appspot.com" /><entry>
    <title>Cystatin C Is Downregulated in Prostate Cancer and Modulates Invasion of Prostate Cancer Cells &lt;italic&gt;via&lt;/italic&gt; MAPK/Erk and Androgen Receptor Pathways</title>
    <link rel="alternate" href="http://www.plosone.org/article/info%3Adoi%2F10.1371%2Fjournal.pone.0007953" title="Cystatin C Is Downregulated in Prostate Cancer and Modulates Invasion of Prostate Cancer Cells &lt;italic&gt;via&lt;/italic&gt; MAPK/Erk and Androgen Receptor Pathways" />
    <link rel="related" type="application/pdf" href="http://www.plosone.org/article/fetchObjectAttachment.action?uri=info:doi/10.1371/journal.pone.0007953&amp;representation=PDF" title="(PDF) Cystatin C Is Downregulated in Prostate Cancer and Modulates Invasion of Prostate Cancer Cells &lt;italic&gt;via&lt;/italic&gt; MAPK/Erk and Androgen Receptor Pathways" />
    <link rel="related" type="text/xml" href="http://www.plosone.org/article/fetchObjectAttachment.action?uri=info:doi/10.1371/journal.pone.0007953&amp;representation=XML" title="(XML) Cystatin C Is Downregulated in Prostate Cancer and Modulates Invasion of Prostate Cancer Cells &lt;italic&gt;via&lt;/italic&gt; MAPK/Erk and Androgen Receptor Pathways" />
    <author>
      <name>Barbara Wegiel et al.</name>
    </author>
    <id>info:doi/10.1371/journal.pone.0007953</id>
    <updated>2009-11-23T08:00:00Z</updated>
    <published>2009-11-23T08:00:00Z</published>
    <content type="html">&lt;p xmlns:xs="http://www.w3.org/2001/XMLSchema" xmlns:fn="http://www.w3.org/2005/xpath-functions" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:util="http://dtd.nlm.nih.gov/xsl/util" xmlns:fo="http://www.w3.org/1999/XSL/Format" xmlns:mml="http://www.w3.org/1998/Math/MathML"&gt;Cystatin C is believed to prevent tumor progression by inhibiting the activities of a family of lysosomal cysteine proteases. However, little is known about the precise mechanism of cystatin C function in prostate cancer. In the present study, we examined the expression of cystatin C and its association with matrix metalloproteinases 2 (MMP2) and androgen receptor (AR) in a tissue microarray comparing benign and malignant specimens from 448 patients who underwent radical prostatectomy for localized prostate cancer. Cystatin C expression was significantly lower in cancer specimens than in benign tissues (p&amp;lt;0.001) and there was a statistically significant inverse correlation between expression of cystatin C and MMP2 (r&lt;sub&gt;s&lt;/sub&gt;&lt;sup&gt;2&lt;/sup&gt; = −0.056, p = 0.05). There was a clear trend that patients with decreased level of cystatin C had lower overall survival. Targeted inhibition of cystatin C using specific siRNA resulted in an increased invasiveness of PC3 cells, whereas induction of cystatin C overexpression greatly reduced invasion rate of PC3 in vitro. The effect of cystatin C on modulating the PC3 cell invasion was provoked by Erk2 inhibitor that specifically inhibited MAPK/Erk2 activity. This suggests that cystatin C may mediate tumor cell invasion by modulating the activity of MAPK/Erk cascades. Consistent with our immunohistochemical findings that patients with low expression of cystatin C and high expression of androgen receptor (AR) tend to have worse overall survival than patients with high expression of cystatin C and high AR expression, induced overexpression of AR in PC3 cells expressing cystatin C siRNA greatly enhanced the invasiveness of PC3 cells. This suggests that there may be a crosstalk between cystatin C and AR-mediated pathways. Our study uncovers a novel role for cystatin C and its associated cellular pathways in prostate cancer invasion and metastasis.&lt;/p&gt;</content>
  </entry>
  <entry>
    <title>PGC-1-Related Coactivator Modulates Mitochondrial-Nuclear Crosstalk through Endogenous Nitric Oxide in a Cellular Model of Oncocytic Thyroid Tumours</title>
    <link rel="alternate" href="http://www.plosone.org/article/info%3Adoi%2F10.1371%2Fjournal.pone.0007964" title="PGC-1-Related Coactivator Modulates Mitochondrial-Nuclear Crosstalk through Endogenous Nitric Oxide in a Cellular Model of Oncocytic Thyroid Tumours" />
    <link rel="related" type="application/pdf" href="http://www.plosone.org/article/fetchObjectAttachment.action?uri=info:doi/10.1371/journal.pone.0007964&amp;representation=PDF" title="(PDF) PGC-1-Related Coactivator Modulates Mitochondrial-Nuclear Crosstalk through Endogenous Nitric Oxide in a Cellular Model of Oncocytic Thyroid Tumours" />
    <link rel="related" type="text/xml" href="http://www.plosone.org/article/fetchObjectAttachment.action?uri=info:doi/10.1371/journal.pone.0007964&amp;representation=XML" title="(XML) PGC-1-Related Coactivator Modulates Mitochondrial-Nuclear Crosstalk through Endogenous Nitric Oxide in a Cellular Model of Oncocytic Thyroid Tumours" />
    <author>
      <name>Mahatsangy Raharijaona et al.</name>
    </author>
    <id>info:doi/10.1371/journal.pone.0007964</id>
    <updated>2009-11-23T08:00:00Z</updated>
    <published>2009-11-23T08:00:00Z</published>
    <content type="html">Background

&lt;p xmlns:xs="http://www.w3.org/2001/XMLSchema" xmlns:fn="http://www.w3.org/2005/xpath-functions" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:util="http://dtd.nlm.nih.gov/xsl/util" xmlns:fo="http://www.w3.org/1999/XSL/Format" xmlns:mml="http://www.w3.org/1998/Math/MathML"&gt;The PGC-1 related coactivator (PRC), which shares structural and functional features with PGC-1α, is believed to regulate several metabolic pathways as well as mitochondrial biogenesis. Its involvement in the early programming of cell proliferation suggests the existence of finely regulated crosstalk between mitochondrial functions and the cell cycle status.&lt;/p&gt;

Methodology/Principal Findings

&lt;p xmlns:xs="http://www.w3.org/2001/XMLSchema" xmlns:fn="http://www.w3.org/2005/xpath-functions" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:util="http://dtd.nlm.nih.gov/xsl/util" xmlns:fo="http://www.w3.org/1999/XSL/Format" xmlns:mml="http://www.w3.org/1998/Math/MathML"&gt;PRC-regulated pathways were explored in a cell-line model derived from mitochondrial-rich tumours with an essentially oxidative metabolism and specifically high PRC expression. The functional status of mitochondria was compared to the results of microarray analysis under conditions of temporal PRC inhibition. To specify the fine PRC regulation, the expression levels of the genes and proteins involved in the oxidative phosphorylation process were studied by real time quantitative PCR and western blotting. As in earlier studies on PGC-1α, we investigated the role of nitric oxide in PRC-regulated mitochondrial biogenesis and determined its action in the control of the phosphorylation status of the mitogen-activated protein kinase pathway.&lt;/p&gt;

Conclusion/Significance

&lt;p xmlns:xs="http://www.w3.org/2001/XMLSchema" xmlns:fn="http://www.w3.org/2005/xpath-functions" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:util="http://dtd.nlm.nih.gov/xsl/util" xmlns:fo="http://www.w3.org/1999/XSL/Format" xmlns:mml="http://www.w3.org/1998/Math/MathML"&gt;We found that nitric oxide rapidly influences PRC expression at the transcriptional level. Focusing on mitochondrial energetic metabolism, we observed that PRC differentially controls respiratory chain complexes and coupling efficiency in a time-dependent manner to maintain mitochondrial homeostasis. Our results highlight the key role of PRC in the rapid modulation of metabolic functions in response to the status of the cell cycle.&lt;/p&gt;</content>
  </entry>
  <entry>
    <title>Electroporating Fields Target Oxidatively Damaged Areas in the Cell Membrane</title>
    <link rel="alternate" href="http://www.plosone.org/article/info%3Adoi%2F10.1371%2Fjournal.pone.0007966" title="Electroporating Fields Target Oxidatively Damaged Areas in the Cell Membrane" />
    <link rel="related" type="application/pdf" href="http://www.plosone.org/article/fetchObjectAttachment.action?uri=info:doi/10.1371/journal.pone.0007966&amp;representation=PDF" title="(PDF) Electroporating Fields Target Oxidatively Damaged Areas in the Cell Membrane" />
    <link rel="related" type="text/xml" href="http://www.plosone.org/article/fetchObjectAttachment.action?uri=info:doi/10.1371/journal.pone.0007966&amp;representation=XML" title="(XML) Electroporating Fields Target Oxidatively Damaged Areas in the Cell Membrane" />
    <author>
      <name>P. Thomas Vernier et al.</name>
    </author>
    <id>info:doi/10.1371/journal.pone.0007966</id>
    <updated>2009-11-23T08:00:00Z</updated>
    <published>2009-11-23T08:00:00Z</published>
    <content type="html">&lt;p xmlns:xs="http://www.w3.org/2001/XMLSchema" xmlns:fn="http://www.w3.org/2005/xpath-functions" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:util="http://dtd.nlm.nih.gov/xsl/util" xmlns:fo="http://www.w3.org/1999/XSL/Format" xmlns:mml="http://www.w3.org/1998/Math/MathML"&gt;Reversible electropermeabilization (electroporation) is widely used to facilitate the introduction of genetic material and pharmaceutical agents into living cells. Although considerable knowledge has been gained from the study of real and simulated model membranes in electric fields, efforts to optimize electroporation protocols are limited by a lack of detailed understanding of the molecular basis for the electropermeabilization of the complex biomolecular assembly that forms the plasma membrane. We show here, with results from both molecular dynamics simulations and experiments with living cells, that the oxidation of membrane components enhances the susceptibility of the membrane to electropermeabilization. Manipulation of the level of oxidative stress in cell suspensions and in tissues may lead to more efficient permeabilization procedures in the laboratory and in clinical applications such as electrochemotherapy and electrotransfection-mediated gene therapy.&lt;/p&gt;</content>
  </entry>
  <entry>
    <title>Akt and SHIP Modulate &lt;italic&gt;Francisella&lt;/italic&gt; Escape from the Phagosome and Induction of the Fas-Mediated Death Pathway</title>
    <link rel="alternate" href="http://www.plosone.org/article/info%3Adoi%2F10.1371%2Fjournal.pone.0007919" title="Akt and SHIP Modulate &lt;italic&gt;Francisella&lt;/italic&gt; Escape from the Phagosome and Induction of the Fas-Mediated Death Pathway" />
    <link rel="related" type="text/xml" href="http://www.plosone.org/article/fetchObjectAttachment.action?uri=info:doi/10.1371/journal.pone.0007919&amp;representation=XML" title="(XML) Akt and SHIP Modulate &lt;italic&gt;Francisella&lt;/italic&gt; Escape from the Phagosome and Induction of the Fas-Mediated Death Pathway" />
    <link rel="related" type="application/pdf" href="http://www.plosone.org/article/fetchObjectAttachment.action?uri=info:doi/10.1371/journal.pone.0007919&amp;representation=PDF" title="(PDF) Akt and SHIP Modulate &lt;italic&gt;Francisella&lt;/italic&gt; Escape from the Phagosome and Induction of the Fas-Mediated Death Pathway" />
    <author>
      <name>Murugesan V. S. Rajaram et al.</name>
    </author>
    <id>info:doi/10.1371/journal.pone.0007919</id>
    <updated>2009-11-20T08:00:00Z</updated>
    <published>2009-11-20T08:00:00Z</published>
    <content type="html">&lt;p xmlns:xs="http://www.w3.org/2001/XMLSchema" xmlns:fn="http://www.w3.org/2005/xpath-functions" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:util="http://dtd.nlm.nih.gov/xsl/util" xmlns:fo="http://www.w3.org/1999/XSL/Format" xmlns:mml="http://www.w3.org/1998/Math/MathML"&gt;&lt;i&gt;Francisella tularensis&lt;/i&gt; infects macrophages and escapes phago-lysosomal fusion to replicate within the host cytosol, resulting in host cell apoptosis. Here we show that the Fas-mediated death pathway is activated in infected cells and correlates with escape of the bacterium from the phagosome and the bacterial burden. Our studies also demonstrate that constitutive activation of Akt, or deletion of SHIP, promotes phago-lysosomal fusion and limits bacterial burden in the host cytosol, and the subsequent induction of Fas expression and cell death. Finally, we show that phagosomal escape/intracellular bacterial burden regulate activation of the transcription factors sp1/sp3, leading to Fas expression and cell death. These data identify for the first time host cell signaling pathways that regulate the phagosomal escape of &lt;i&gt;Francisella&lt;/i&gt;, leading to the induction of Fas and subsequent host cell death.&lt;/p&gt;</content>
  </entry>
  <entry>
    <title>Modulation of Outer Hair Cell Electromotility by Cochlear Supporting Cells and Gap Junctions</title>
    <link rel="alternate" href="http://www.plosone.org/article/info%3Adoi%2F10.1371%2Fjournal.pone.0007923" title="Modulation of Outer Hair Cell Electromotility by Cochlear Supporting Cells and Gap Junctions" />
    <link rel="related" type="text/xml" href="http://www.plosone.org/article/fetchObjectAttachment.action?uri=info:doi/10.1371/journal.pone.0007923&amp;representation=XML" title="(XML) Modulation of Outer Hair Cell Electromotility by Cochlear Supporting Cells and Gap Junctions" />
    <link rel="related" type="application/pdf" href="http://www.plosone.org/article/fetchObjectAttachment.action?uri=info:doi/10.1371/journal.pone.0007923&amp;representation=PDF" title="(PDF) Modulation of Outer Hair Cell Electromotility by Cochlear Supporting Cells and Gap Junctions" />
    <author>
      <name>Ning Yu et al.</name>
    </author>
    <id>info:doi/10.1371/journal.pone.0007923</id>
    <updated>2009-11-20T08:00:00Z</updated>
    <published>2009-11-20T08:00:00Z</published>
    <content type="html">&lt;p xmlns:xs="http://www.w3.org/2001/XMLSchema" xmlns:fn="http://www.w3.org/2005/xpath-functions" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:util="http://dtd.nlm.nih.gov/xsl/util" xmlns:fo="http://www.w3.org/1999/XSL/Format" xmlns:mml="http://www.w3.org/1998/Math/MathML"&gt;Outer hair cell (OHC) or prestin-based electromotility is an active cochlear amplifier in the mammalian inner ear that can increase hearing sensitivity and frequency selectivity. In situ, Deiters supporting cells are well-coupled by gap junctions and constrain OHCs standing on the basilar membrane. Here, we report that both electrical and mechanical stimulations in Deiters cells (DCs) can modulate OHC electromotility. There was no direct electrical conductance between the DCs and the OHCs. However, depolarization in DCs reduced OHC electromotility associated nonlinear capacitance (NLC) and distortion products. Increase in the turgor pressure of DCs also shifted OHC NLC to the negative voltage direction. Destruction of the cytoskeleton in DCs or dissociation of the mechanical-coupling between DCs and OHCs abolished these effects, indicating the modulation through the cytoskeleton activation and DC-OHC mechanical coupling rather than via electric field potentials. We also found that changes in gap junctional coupling between DCs induced large membrane potential and current changes in the DCs and shifted OHC NLC. Uncoupling of gap junctions between DCs shifted NLC to the negative direction. These data indicate that DCs not only provide a physical scaffold to support OHCs but also can directly modulate OHC electromotility through the DC-OHC mechanical coupling. Our findings reveal a new mechanism of cochlear supporting cells and gap junctional coupling to modulate OHC electromotility and eventually hearing sensitivity in the inner ear.&lt;/p&gt;</content>
  </entry>
  <entry>
    <title>p38γ Mitogen-Activated Protein Kinase Is a Key Regulator in Skeletal Muscle Metabolic Adaptation in Mice</title>
    <link rel="alternate" href="http://www.plosone.org/article/info%3Adoi%2F10.1371%2Fjournal.pone.0007934" title="p38γ Mitogen-Activated Protein Kinase Is a Key Regulator in Skeletal Muscle Metabolic Adaptation in Mice" />
    <link rel="related" type="application/pdf" href="http://www.plosone.org/article/fetchObjectAttachment.action?uri=info:doi/10.1371/journal.pone.0007934&amp;representation=PDF" title="(PDF) p38γ Mitogen-Activated Protein Kinase Is a Key Regulator in Skeletal Muscle Metabolic Adaptation in Mice" />
    <link rel="related" type="text/xml" href="http://www.plosone.org/article/fetchObjectAttachment.action?uri=info:doi/10.1371/journal.pone.0007934&amp;representation=XML" title="(XML) p38γ Mitogen-Activated Protein Kinase Is a Key Regulator in Skeletal Muscle Metabolic Adaptation in Mice" />
    <author>
      <name>Andrew R. Pogozelski et al.</name>
    </author>
    <id>info:doi/10.1371/journal.pone.0007934</id>
    <updated>2009-11-20T08:00:00Z</updated>
    <published>2009-11-20T08:00:00Z</published>
    <content type="html">&lt;p xmlns:xs="http://www.w3.org/2001/XMLSchema" xmlns:fn="http://www.w3.org/2005/xpath-functions" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:util="http://dtd.nlm.nih.gov/xsl/util" xmlns:fo="http://www.w3.org/1999/XSL/Format" xmlns:mml="http://www.w3.org/1998/Math/MathML"&gt;Regular endurance exercise induces skeletal muscle contractile and metabolic adaptations, conferring salutary health benefits, such as protection against the metabolic syndrome. The plasticity of skeletal muscle has been extensively investigated, but how the adaptive processes are precisely controlled is largely unknown. Using muscle-specific gene deletion in mice, we now show that p38γ mitogen-activated protein kinase (MAPK), but not p38α and p38β, is required for endurance exercise-induced mitochondrial biogenesis and angiogenesis, whereas none of the p38 isoforms are required for IIb-to-IIa fiber-type transformation. These phenotypic findings were further supported by microarray and real-time PCR analyses revealing contractile activity-dependent p38γ target genes, including peroxisome proliferator-activated receptor γ co-activator-1α (&lt;i&gt;Pgc-1&lt;/i&gt;α) and vascular endothelial growth factor (&lt;i&gt;Vegf&lt;/i&gt;), in skeletal muscle following motor nerve stimulation. Gene transfer-mediated overexpression of a dominant negative form of p38γ, but not that of p38α or p38β, blocked motor nerve stimulation-induced &lt;i&gt;Pgc-1α&lt;/i&gt; transcription. These findings provide direct evidence for an obligated role of p38γ MAPK-PGC-1α regulatory axis in endurance exercise-induced metabolic adaptation, but not contractile adaptation, in skeletal muscle.&lt;/p&gt;</content>
  </entry>
  <entry>
    <title>Divergent Mechanisms Controlling Hypoxic Sensitivity and Lifespan by the DAF-2/Insulin/IGF-Receptor Pathway</title>
    <link rel="alternate" href="http://www.plosone.org/article/info%3Adoi%2F10.1371%2Fjournal.pone.0007937" title="Divergent Mechanisms Controlling Hypoxic Sensitivity and Lifespan by the DAF-2/Insulin/IGF-Receptor Pathway" />
    <link rel="related" type="application/pdf" href="http://www.plosone.org/article/fetchObjectAttachment.action?uri=info:doi/10.1371/journal.pone.0007937&amp;representation=PDF" title="(PDF) Divergent Mechanisms Controlling Hypoxic Sensitivity and Lifespan by the DAF-2/Insulin/IGF-Receptor Pathway" />
    <link rel="related" type="text/xml" href="http://www.plosone.org/article/fetchObjectAttachment.action?uri=info:doi/10.1371/journal.pone.0007937&amp;representation=XML" title="(XML) Divergent Mechanisms Controlling Hypoxic Sensitivity and Lifespan by the DAF-2/Insulin/IGF-Receptor Pathway" />
    <author>
      <name>Meghann E. Mabon et al.</name>
    </author>
    <id>info:doi/10.1371/journal.pone.0007937</id>
    <updated>2009-11-20T08:00:00Z</updated>
    <published>2009-11-20T08:00:00Z</published>
    <content type="html">&lt;p xmlns:xs="http://www.w3.org/2001/XMLSchema" xmlns:fn="http://www.w3.org/2005/xpath-functions" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:util="http://dtd.nlm.nih.gov/xsl/util" xmlns:fo="http://www.w3.org/1999/XSL/Format" xmlns:mml="http://www.w3.org/1998/Math/MathML"&gt;Organisms and their cells vary greatly in their tolerance of low oxygen environments (hypoxia). A delineation of the determinants of hypoxia tolerance is incomplete, despite intense interest for its implications in diseases such as stroke and myocardial infarction. The insulin/IGF-1 receptor (IGFR) signaling pathway controls survival of &lt;i&gt;Caenorhabditis elegans&lt;/i&gt; from a variety of stressors including aging, hyperthermia, and hypoxia. &lt;i&gt;daf-2&lt;/i&gt; encodes a &lt;i&gt;C. elegans&lt;/i&gt; IGFR homolog whose primary signaling pathway modulates the activity of the FOXO transcription factor DAF-16. DAF-16 regulates the transcription of a large number of genes, some of which have been shown to control aging. To identify genes that selectively regulate hypoxic sensitivity, we compared the whole-organismal transcriptomes of three &lt;i&gt;daf-2&lt;/i&gt; reduction-of-function alleles, all of which are hypoxia resistant, thermotolerant, and long lived, but differ in their rank of severities for these phenotypes. The transcript levels of 172 genes were increased in the most hypoxia resistant &lt;i&gt;daf-2&lt;/i&gt; allele, &lt;i&gt;e1370&lt;/i&gt;, relative to the other alleles whereas transcripts from only 10 genes were decreased in abundance. RNAi knockdown of 6 of the 10 genes produced a significant increase in organismal survival after hypoxic exposure as would be expected if down regulation of these genes by the &lt;i&gt;e1370&lt;/i&gt; mutation was responsible for hypoxia resistance. However, RNAi knockdown of these genes did not prolong lifespan. These genes definitively separate the mechanisms of hypoxic sensitivity and lifespan and identify biological strategies to survive hypoxic injury.&lt;/p&gt;</content>
  </entry>
  <entry>
    <title>Catastrophic NAD&lt;sup&gt;+&lt;/sup&gt; Depletion in Activated T Lymphocytes through Nampt Inhibition Reduces Demyelination and Disability in EAE</title>
    <link rel="alternate" href="http://www.plosone.org/article/info%3Adoi%2F10.1371%2Fjournal.pone.0007897" title="Catastrophic NAD&lt;sup&gt;+&lt;/sup&gt; Depletion in Activated T Lymphocytes through Nampt Inhibition Reduces Demyelination and Disability in EAE" />
    <link rel="related" type="application/pdf" href="http://www.plosone.org/article/fetchObjectAttachment.action?uri=info:doi/10.1371/journal.pone.0007897&amp;representation=PDF" title="(PDF) Catastrophic NAD&lt;sup&gt;+&lt;/sup&gt; Depletion in Activated T Lymphocytes through Nampt Inhibition Reduces Demyelination and Disability in EAE" />
    <link rel="related" type="text/xml" href="http://www.plosone.org/article/fetchObjectAttachment.action?uri=info:doi/10.1371/journal.pone.0007897&amp;representation=XML" title="(XML) Catastrophic NAD&lt;sup&gt;+&lt;/sup&gt; Depletion in Activated T Lymphocytes through Nampt Inhibition Reduces Demyelination and Disability in EAE" />
    <author>
      <name>Santina Bruzzone et al.</name>
    </author>
    <id>info:doi/10.1371/journal.pone.0007897</id>
    <updated>2009-11-19T08:00:00Z</updated>
    <published>2009-11-19T08:00:00Z</published>
    <content type="html">&lt;p xmlns:xs="http://www.w3.org/2001/XMLSchema" xmlns:fn="http://www.w3.org/2005/xpath-functions" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:util="http://dtd.nlm.nih.gov/xsl/util" xmlns:fo="http://www.w3.org/1999/XSL/Format" xmlns:mml="http://www.w3.org/1998/Math/MathML"&gt;Nicotinamide phosphoribosyltransferase (Nampt) inhibitors such as FK866 are potent inhibitors of NAD&lt;sup&gt;+&lt;/sup&gt; synthesis that show promise for the treatment of different forms of cancer. Based on Nampt upregulation in activated T lymphocytes and on preliminary reports of lymphopenia in FK866 treated patients, we have investigated FK866 for its capacity to interfere with T lymphocyte function and survival. Intracellular pyridine nucleotides, ATP, mitochondrial function, viability, proliferation, activation markers and cytokine secretion were assessed in resting and in activated human T lymphocytes. In addition, we used experimental autoimmune encephalomyelitis (EAE) as a model of T-cell mediated autoimmune disease to assess FK866 efficacy &lt;i&gt;in vivo&lt;/i&gt;. We show that activated, but not resting, T lymphocytes undergo massive NAD&lt;sup&gt;+&lt;/sup&gt; depletion upon FK866-mediated Nampt inhibition. As a consequence, impaired proliferation, reduced IFN-γ and TNF-α production, and finally autophagic cell demise result. We demonstrate that upregulation of the NAD&lt;sup&gt;+&lt;/sup&gt;-degrading enzyme poly-(ADP-ribose)-polymerase (PARP) by activated T cells enhances their susceptibility to NAD&lt;sup&gt;+&lt;/sup&gt; depletion. In addition, we relate defective IFN-γ and TNF-α production in response to FK866 to impaired Sirt6 activity. Finally, we show that FK866 strikingly reduces the neurological damage and the clinical manifestations of EAE. In conclusion, Nampt inhibitors (and possibly Sirt6 inhibitors) could be used to modulate T cell-mediated immune responses and thereby be beneficial in immune-mediated disorders.&lt;/p&gt;</content>
  </entry>
  <entry>
    <title>H-Ras Expression in Immortalized Keratinocytes Produces an Invasive Epithelium in Cultured Skin Equivalents</title>
    <link rel="alternate" href="http://www.plosone.org/article/info%3Adoi%2F10.1371%2Fjournal.pone.0007908" title="H-Ras Expression in Immortalized Keratinocytes Produces an Invasive Epithelium in Cultured Skin Equivalents" />
    <link rel="related" type="application/pdf" href="http://www.plosone.org/article/fetchObjectAttachment.action?uri=info:doi/10.1371/journal.pone.0007908&amp;representation=PDF" title="(PDF) H-Ras Expression in Immortalized Keratinocytes Produces an Invasive Epithelium in Cultured Skin Equivalents" />
    <link rel="related" type="text/xml" href="http://www.plosone.org/article/fetchObjectAttachment.action?uri=info:doi/10.1371/journal.pone.0007908&amp;representation=XML" title="(XML) H-Ras Expression in Immortalized Keratinocytes Produces an Invasive Epithelium in Cultured Skin Equivalents" />
    <author>
      <name>Melville B. Vaughan et al.</name>
    </author>
    <id>info:doi/10.1371/journal.pone.0007908</id>
    <updated>2009-11-19T08:00:00Z</updated>
    <published>2009-11-19T08:00:00Z</published>
    <content type="html">Background

&lt;p xmlns:xs="http://www.w3.org/2001/XMLSchema" xmlns:fn="http://www.w3.org/2005/xpath-functions" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:util="http://dtd.nlm.nih.gov/xsl/util" xmlns:fo="http://www.w3.org/1999/XSL/Format" xmlns:mml="http://www.w3.org/1998/Math/MathML"&gt;Ras proteins affect both proliferation and expression of collagen-degrading enzymes, two important processes in cancer progression. Normal skin architecture is dependent both on the coordinated proliferation and stratification of keratinocytes, as well as the maintenance of a collagen-rich basement membrane. In the present studies we sought to determine whether expression of H-ras in skin keratinocytes would affect these parameters during the establishment and maintenance of an &lt;i&gt;in vitro&lt;/i&gt; skin equivalent.&lt;/p&gt;

Methodology/Principal Findings

&lt;p xmlns:xs="http://www.w3.org/2001/XMLSchema" xmlns:fn="http://www.w3.org/2005/xpath-functions" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:util="http://dtd.nlm.nih.gov/xsl/util" xmlns:fo="http://www.w3.org/1999/XSL/Format" xmlns:mml="http://www.w3.org/1998/Math/MathML"&gt;Previously described cdk4 and hTERT immortalized foreskin keratinocytes were engineered to express ectopically introduced H-ras. Skin equivalents, composed of normal fibroblast-contracted collagen gels overlaid with keratinocytes (immortal or immortal expressing H-ras), were prepared and incubated for 3 weeks. Harvested tissues were processed and sectioned for histology and antibody staining. Antigens specific to differentiation (involucrin, keratin-14, p63), basement-membrane formation (collagen IV, laminin-5), and epithelial to mesenchymal transition (EMT; e-cadherin, vimentin) were studied. Results showed that H-ras keratinocytes produced an invasive, disorganized epithelium most apparent in the lower strata while immortalized keratinocytes fully stratified without invasive properties. The superficial strata retained morphologically normal characteristics. Vimentin and p63 co-localization increased with H-ras overexpression, similar to basal wound-healing keratinocytes. In contrast, the cdk4 and hTERT immortalized keratinocytes differentiated similarly to normal unimmortalized keratinocytes.&lt;/p&gt;

Conclusions/Significance

&lt;p xmlns:xs="http://www.w3.org/2001/XMLSchema" xmlns:fn="http://www.w3.org/2005/xpath-functions" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:util="http://dtd.nlm.nih.gov/xsl/util" xmlns:fo="http://www.w3.org/1999/XSL/Format" xmlns:mml="http://www.w3.org/1998/Math/MathML"&gt;The use of isogenic derivatives of stable immortalized keratinocytes with specified genetic alterations may be helpful in developing more robust in vitro models of cancer progression.&lt;/p&gt;</content>
  </entry>
  <entry>
    <title>The Coiled-Coil Domain of EHD2 Mediates Inhibition of LeEix2 Endocytosis and Signaling</title>
    <link rel="alternate" href="http://www.plosone.org/article/info%3Adoi%2F10.1371%2Fjournal.pone.0007973" title="The Coiled-Coil Domain of EHD2 Mediates Inhibition of LeEix2 Endocytosis and Signaling" />
    <link rel="related" type="text/xml" href="http://www.plosone.org/article/fetchObjectAttachment.action?uri=info:doi/10.1371/journal.pone.0007973&amp;representation=XML" title="(XML) The Coiled-Coil Domain of EHD2 Mediates Inhibition of LeEix2 Endocytosis and Signaling" />
    <link rel="related" type="application/pdf" href="http://www.plosone.org/article/fetchObjectAttachment.action?uri=info:doi/10.1371/journal.pone.0007973&amp;representation=PDF" title="(PDF) The Coiled-Coil Domain of EHD2 Mediates Inhibition of LeEix2 Endocytosis and Signaling" />
    <author>
      <name>Maya Bar et al.</name>
    </author>
    <id>info:doi/10.1371/journal.pone.0007973</id>
    <updated>2009-11-19T08:00:00Z</updated>
    <published>2009-11-19T08:00:00Z</published>
    <content type="html">&lt;p xmlns:xs="http://www.w3.org/2001/XMLSchema" xmlns:fn="http://www.w3.org/2005/xpath-functions" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:util="http://dtd.nlm.nih.gov/xsl/util" xmlns:fo="http://www.w3.org/1999/XSL/Format" xmlns:mml="http://www.w3.org/1998/Math/MathML"&gt;Endocytosis has been suggested to be crucial for the induction of plant immunity in several cases. We have previously shown that two Arabidopsis proteins, AtEHD1 and AtEHD2, are involved in endocytosis in plant systems. AtEHD2 has an inhibitory effect on endocytosis of transferrin, FM-4-64, and LeEix2. There are many works in mammalian systems detailing the importance of the various domains in EHDs but, to date, the domains of plant EHD2 that are required for its inhibitory activity on endocytosis remained unknown. In this work we demonstrate that the coiled-coil domain of EHD2 is crucial for the ability of EHD2 to inhibit endocytosis in plants, as mutant EHD2 forms lacking the coiled-coil lost the ability to inhibit endocytosis and signaling of LeEix2. The coiled-coil was also required for binding of EHD2 to the LeEix2 receptor. It is therefore probable that binding of EHD2 to the LeEix2 receptor is required for inhibition of LeEix2 internalization. We also show herein that the P-loop of EHD2 is important for EHD2 to function properly. The EH domain of AtEHD2 does not appear to be involved in inhibition of endocytosis. Moreover, AtEHD2 influences actin organization and may exert its inhibitory effect on endocytosis through actin re-distribution. The coiled-coil domain of EHD2 functions in inhibition of endocytosis, while the EH domain does not appear to be involved in inhibition of endocytosis.&lt;/p&gt;</content>
  </entry>
  <entry>
    <title>A Cell Motility Screen Reveals Role for MARCKS-Related Protein in Adherens Junction Formation and Tumorigenesis</title>
    <link rel="alternate" href="http://www.plosone.org/article/info%3Adoi%2F10.1371%2Fjournal.pone.0007833" title="A Cell Motility Screen Reveals Role for MARCKS-Related Protein in Adherens Junction Formation and Tumorigenesis" />
    <link rel="related" type="application/pdf" href="http://www.plosone.org/article/fetchObjectAttachment.action?uri=info:doi/10.1371/journal.pone.0007833&amp;representation=PDF" title="(PDF) A Cell Motility Screen Reveals Role for MARCKS-Related Protein in Adherens Junction Formation and Tumorigenesis" />
    <link rel="related" type="text/xml" href="http://www.plosone.org/article/fetchObjectAttachment.action?uri=info:doi/10.1371/journal.pone.0007833&amp;representation=XML" title="(XML) A Cell Motility Screen Reveals Role for MARCKS-Related Protein in Adherens Junction Formation and Tumorigenesis" />
    <author>
      <name>Alexander E. Finlayson et al.</name>
    </author>
    <id>info:doi/10.1371/journal.pone.0007833</id>
    <updated>2009-11-18T08:00:00Z</updated>
    <published>2009-11-18T08:00:00Z</published>
    <content type="html">&lt;p xmlns:xs="http://www.w3.org/2001/XMLSchema" xmlns:fn="http://www.w3.org/2005/xpath-functions" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:util="http://dtd.nlm.nih.gov/xsl/util" xmlns:fo="http://www.w3.org/1999/XSL/Format" xmlns:mml="http://www.w3.org/1998/Math/MathML"&gt;Invasion through the extracellular matrix (ECM) is important for wound healing, immunological responses and metastasis. We established an invasion-based cell motility screen using Boyden chambers overlaid with Matrigel to select for pro-invasive genes. By this method we identified antisense to MARCKS related protein (MRP), whose family member MARCKS is a target of miR-21, a microRNA involved in tumor growth, invasion and metastasis in multiple human cancers. We confirmed that targeted knockdown of MRP, in both EpRas mammary epithelial cells and PC3 prostate cancer cells, promoted &lt;i&gt;in vitro&lt;/i&gt; cell migration that was blocked by trifluoperazine. Additionally, we observed increased immunofluoresence of E-cadherin, β-catenin and APC at sites of cell-cell contact in EpRas cells with MRP knockdown suggesting formation of adherens junctions. By wound healing assay we observed that reduced MRP supported collective cell migration, a type of cell movement where adherens junctions are maintained. However, destabilized adherens junctions, like those seen in EpRas cells, are frequently important for oncogenic signaling. Consequently, knockdown of MRP in EpRas caused loss of tumorigenesis &lt;i&gt;in vivo&lt;/i&gt;, and reduced Wnt3a induced TCF reporter signaling &lt;i&gt;in vitro&lt;/i&gt;. Together our data suggest that reducing MRP expression promotes formation of adherens junctions in EpRas cells, allowing collective cell migration, but interferes with oncogenic β-catenin signaling and tumorigenesis.&lt;/p&gt;</content>
  </entry>
  <entry>
    <title>The Death Effector Domains of Caspase-8 Induce Terminal Differentiation</title>
    <link rel="alternate" href="http://www.plosone.org/article/info%3Adoi%2F10.1371%2Fjournal.pone.0007879" title="The Death Effector Domains of Caspase-8 Induce Terminal Differentiation" />
    <link rel="related" type="text/xml" href="http://www.plosone.org/article/fetchObjectAttachment.action?uri=info:doi/10.1371/journal.pone.0007879&amp;representation=XML" title="(XML) The Death Effector Domains of Caspase-8 Induce Terminal Differentiation" />
    <link rel="related" type="application/pdf" href="http://www.plosone.org/article/fetchObjectAttachment.action?uri=info:doi/10.1371/journal.pone.0007879&amp;representation=PDF" title="(PDF) The Death Effector Domains of Caspase-8 Induce Terminal Differentiation" />
    <author>
      <name>Ainhoa Mielgo et al.</name>
    </author>
    <id>info:doi/10.1371/journal.pone.0007879</id>
    <updated>2009-11-18T08:00:00Z</updated>
    <published>2009-11-18T08:00:00Z</published>
    <content type="html">&lt;p xmlns:xs="http://www.w3.org/2001/XMLSchema" xmlns:fn="http://www.w3.org/2005/xpath-functions" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:util="http://dtd.nlm.nih.gov/xsl/util" xmlns:fo="http://www.w3.org/1999/XSL/Format" xmlns:mml="http://www.w3.org/1998/Math/MathML"&gt;The differentiation and senescence programs of metazoans play key roles in regulating normal development and preventing aberrant cell proliferation, such as cancer. These programs are intimately associated with both the mitotic and apoptotic pathways. Caspase-8 is an apical apoptotic initiator that has recently been appreciated to coordinate non-apoptotic roles in the cell. Most of these functions are attributed to the catalytic domain, however, the amino-terminal death effector domains (DED)s, which belong to the death domain superfamily of proteins, can also play key roles during development. Here we describe a novel role for caspase-8 DEDs in regulating cell differentiation and senescence. Caspase-8 DEDs accumulate during terminal differentiation and senescence of epithelial, endothelial and myeloid cells; genetic deletion or shRNA suppression of caspase-8 disrupts cell differentiation, while re-expression of DEDs rescues this phenotype. Among caspase-8 deficient neuroblastoma cells, DED expression attenuated tumor growth &lt;i&gt;in vivo&lt;/i&gt; and proliferation &lt;i&gt;in vitro&lt;/i&gt; via disruption of mitosis and cytokinesis, resulting in upregulation of p53 and induction of differentiation markers. These events occur independent of caspase-8 catalytic activity, but require a critical lysine (K156) in a microtubule-binding motif in the second DED domain. The results demonstrate a new function for the DEDs of caspase-8, and describe an unexpected mechanism that contributes to cell differentiation and senescence.&lt;/p&gt;</content>
  </entry>
  <entry>
    <title>Visualisation and Quantitative Analysis of the Rodent Malaria Liver Stage by Real Time Imaging</title>
    <link rel="alternate" href="http://www.plosone.org/article/info%3Adoi%2F10.1371%2Fjournal.pone.0007881" title="Visualisation and Quantitative Analysis of the Rodent Malaria Liver Stage by Real Time Imaging" />
    <link rel="related" type="text/xml" href="http://www.plosone.org/article/fetchObjectAttachment.action?uri=info:doi/10.1371/journal.pone.0007881&amp;representation=XML" title="(XML) Visualisation and Quantitative Analysis of the Rodent Malaria Liver Stage by Real Time Imaging" />
    <link rel="related" type="application/pdf" href="http://www.plosone.org/article/fetchObjectAttachment.action?uri=info:doi/10.1371/journal.pone.0007881&amp;representation=PDF" title="(PDF) Visualisation and Quantitative Analysis of the Rodent Malaria Liver Stage by Real Time Imaging" />
    <author>
      <name>Ivo H. J. Ploemen et al.</name>
    </author>
    <id>info:doi/10.1371/journal.pone.0007881</id>
    <updated>2009-11-18T08:00:00Z</updated>
    <published>2009-11-18T08:00:00Z</published>
    <content type="html">&lt;p xmlns:xs="http://www.w3.org/2001/XMLSchema" xmlns:fn="http://www.w3.org/2005/xpath-functions" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:util="http://dtd.nlm.nih.gov/xsl/util" xmlns:fo="http://www.w3.org/1999/XSL/Format" xmlns:mml="http://www.w3.org/1998/Math/MathML"&gt;The quantitative analysis of &lt;i&gt;Plasmodium&lt;/i&gt; development in the liver in laboratory animals in cultured cells is hampered by low parasite infection rates and the complicated methods required to monitor intracellular development. As a consequence, this important phase of the parasite's life cycle has been poorly studied compared to blood stages, for example in screening anti-malarial drugs. Here we report the use of a transgenic &lt;i&gt;P. berghei&lt;/i&gt; parasite, &lt;i&gt;Pb&lt;/i&gt;GFP-Luc&lt;sub&gt;con&lt;/sub&gt;, expressing the bioluminescent reporter protein luciferase to visualize and quantify parasite development in liver cells both in culture and in live mice using real-time luminescence imaging. The reporter-parasite based quantification in cultured hepatocytes by real-time imaging or using a microplate reader correlates very well with established quantitative RT-PCR methods. For the first time the liver stage of &lt;i&gt;Plasmodium&lt;/i&gt; is visualized in whole bodies of live mice and we were able to discriminate as few as 1–5 infected hepatocytes per liver in mice using 2D-imaging and to identify individual infected hepatocytes by 3D-imaging. The analysis of liver infections by whole body imaging shows a good correlation with quantitative RT-PCR analysis of extracted livers. The luminescence-based analysis of the effects of various drugs on &lt;i&gt;in vitro&lt;/i&gt; hepatocyte infection shows that this method can effectively be used for &lt;i&gt;in vitro&lt;/i&gt; screening of compounds targeting &lt;i&gt;Plasmodium&lt;/i&gt; liver stages. Furthermore, by analysing the effect of primaquine and tafenoquine &lt;i&gt;in vivo&lt;/i&gt; we demonstrate the applicability of real time imaging to assess parasite drug sensitivity in the liver. The simplicity and speed of quantitative analysis of liver-stage development by real-time imaging compared to the PCR methodologies, as well as the possibility to analyse liver development in live mice without surgery, opens up new possibilities for research on &lt;i&gt;Plasmodium&lt;/i&gt; liver infections and for validating the effect of drugs and vaccines on the liver stage of &lt;i&gt;Plasmodium&lt;/i&gt;.&lt;/p&gt;</content>
  </entry>
  <entry>
    <title>Rapid Activation of Rac GTPase in Living Cells by Force Is Independent of Src</title>
    <link rel="alternate" href="http://www.plosone.org/article/info%3Adoi%2F10.1371%2Fjournal.pone.0007886" title="Rapid Activation of Rac GTPase in Living Cells by Force Is Independent of Src" />
    <link rel="related" type="text/xml" href="http://www.plosone.org/article/fetchObjectAttachment.action?uri=info:doi/10.1371/journal.pone.0007886&amp;representation=XML" title="(XML) Rapid Activation of Rac GTPase in Living Cells by Force Is Independent of Src" />
    <link rel="related" type="application/pdf" href="http://www.plosone.org/article/fetchObjectAttachment.action?uri=info:doi/10.1371/journal.pone.0007886&amp;representation=PDF" title="(PDF) Rapid Activation of Rac GTPase in Living Cells by Force Is Independent of Src" />
    <author>
      <name>Yeh-Chuin Poh et al.</name>
    </author>
    <id>info:doi/10.1371/journal.pone.0007886</id>
    <updated>2009-11-18T08:00:00Z</updated>
    <published>2009-11-18T08:00:00Z</published>
    <content type="html">&lt;p xmlns:xs="http://www.w3.org/2001/XMLSchema" xmlns:fn="http://www.w3.org/2005/xpath-functions" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:util="http://dtd.nlm.nih.gov/xsl/util" xmlns:fo="http://www.w3.org/1999/XSL/Format" xmlns:mml="http://www.w3.org/1998/Math/MathML"&gt;It is well known that mechanical forces are crucial in regulating functions of every tissue and organ in a human body. However, it remains unclear how mechanical forces are transduced into biochemical activities and biological responses at the cellular and molecular level. Using the magnetic twisting cytometry technique, we applied local mechanical stresses to living human airway smooth muscle cells with a magnetic bead bound to the cell surface via transmembrane adhesion molecule integrins. The temporal and spatial activation of Rac, a small guanosine triphosphatase, was quantified using a fluorescent resonance energy transfer (FRET) method that measures changes in Rac activity in response to mechanical stresses by quantifying intensity ratios of ECFP (enhanced cyan fluorescent protein as a donor) and YPet (a variant yellow fluorescent protein as an acceptor) of the Rac biosensor. The applied stress induced rapid activation (less than 300 ms) of Rac at the cell periphery. In contrast, platelet derived growth factor (PDGF) induced Rac activation at a much later time (&amp;gt;30 sec). There was no stress-induced Rac activation when a mutant form of the Rac biosensor (RacN17) was transfected or when the magnetic bead was coated with transferrin or with poly-L-lysine. It is known that PDGF-induced Rac activation depends on Src activity. Surprisingly, pre-treatment of the cells with specific Src inhibitor PP1 or knocking-out Src gene had no effects on stress-induced Rac activation. In addition, eliminating lipid rafts through extraction of cholesterol from the plasma membrane did not prevent stress-induced Rac activation, suggesting a raft-independent mechanism in governing the Rac activation upon mechanical stimulation. Further evidence indicates that Rac activation by stress depends on the magnitudes of the applied stress and cytoskeletal integrity. Our results suggest that Rac activation by mechanical forces is rapid, direct and does not depend on Src activation. These findings suggest that signaling pathways of mechanical forces via integrins might be fundamentally different from those of growth factors.&lt;/p&gt;</content>
  </entry>
  <entry>
    <title>Acadesine Kills Chronic Myelogenous Leukemia (CML) Cells through PKC-Dependent Induction of Autophagic Cell Death</title>
    <link rel="alternate" href="http://www.plosone.org/article/info%3Adoi%2F10.1371%2Fjournal.pone.0007889" title="Acadesine Kills Chronic Myelogenous Leukemia (CML) Cells through PKC-Dependent Induction of Autophagic Cell Death" />
    <link rel="related" type="text/xml" href="http://www.plosone.org/article/fetchObjectAttachment.action?uri=info:doi/10.1371/journal.pone.0007889&amp;representation=XML" title="(XML) Acadesine Kills Chronic Myelogenous Leukemia (CML) Cells through PKC-Dependent Induction of Autophagic Cell Death" />
    <link rel="related" type="application/pdf" href="http://www.plosone.org/article/fetchObjectAttachment.action?uri=info:doi/10.1371/journal.pone.0007889&amp;representation=PDF" title="(PDF) Acadesine Kills Chronic Myelogenous Leukemia (CML) Cells through PKC-Dependent Induction of Autophagic Cell Death" />
    <author>
      <name>Guillaume Robert et al.</name>
    </author>
    <id>info:doi/10.1371/journal.pone.0007889</id>
    <updated>2009-11-18T08:00:00Z</updated>
    <published>2009-11-18T08:00:00Z</published>
    <content type="html">&lt;p xmlns:xs="http://www.w3.org/2001/XMLSchema" xmlns:fn="http://www.w3.org/2005/xpath-functions" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:util="http://dtd.nlm.nih.gov/xsl/util" xmlns:fo="http://www.w3.org/1999/XSL/Format" xmlns:mml="http://www.w3.org/1998/Math/MathML"&gt;CML is an hematopoietic stem cell disease characterized by the t(9;22) (q34;q11) translocation encoding the oncoprotein p210BCR-ABL. The effect of acadesine (AICAR, 5-Aminoimidazole-4-carboxamide-1-β-&lt;i&gt;D&lt;/i&gt;-ribofuranoside) a compound with known antileukemic effect on B cell chronic lymphoblastic leukemia (B-CLL) was investigated in different CML cell lines. Acadesine triggered loss of cell metabolism in K562, LAMA-84 and JURL-MK1 and was also effective in killing imatinib-resistant K562 cells and Ba/F3 cells carrying the T315I-BCR-ABL mutation. The anti-leukemic effect of acadesine did not involve apoptosis but required rather induction of autophagic cell death. AMPK knock-down by Sh-RNA failed to prevent the effect of acadesine, indicating an AMPK-independent mechanism. The effect of acadesine was abrogated by GF109203X and Ro-32-0432, both inhibitor of classical and new PKCs and accordingly, acadesine triggered relocation and activation of several PKC isoforms in K562 cells. In addition, this compound exhibited a potent anti-leukemic effect in clonogenic assays of CML cells in methyl cellulose and in a xenograft model of K562 cells in nude mice. In conclusion, our work identifies an original and unexpected mechanism by which acadesine triggers autophagic cell death through PKC activation. Therefore, in addition to its promising effects in B-CLL, acadesine might also be beneficial for Imatinib-resistant CML patients.&lt;/p&gt;</content>
  </entry>
</feed>
