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<title>Hirschey Lab Publication</title><link>http://lab.hirschey.org/index.html</link><description>Publications</description><dc:language>en</dc:language><dc:creator>matthew.hirschey@duke.edu</dc:creator><dc:rights>Copyright 2011 Matthew Hirschey</dc:rights><dc:date>2013-01-11T12:00:00-05:00</dc:date><admin:generatorAgent rdf:resource="http://www.realmacsoftware.com/" />
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<lastBuildDate>Sat, 23 Feb 2013 14:04:41 -0500</lastBuildDate><item><title>Suppression of Oxidative Stress by &#x3b2;-Hydroxybutyrate&#x2c; an Endogenous Histone Deacetylase Inhibitor</title><dc:creator>matthew.hirschey@duke.edu</dc:creator><category>Publications</category><category>Featured</category><dc:date>2013-01-11T12:00:00-05:00</dc:date><link>http://lab.hirschey.org/publications/files/science2012.html#unique-entry-id-23</link><guid isPermaLink="true">http://lab.hirschey.org/publications/files/science2012.html#unique-entry-id-23</guid><content:encoded><![CDATA[<img class="imageStyle" alt="blogEntryThumbnail" width="237" height="299" src="http://lab.hirschey.org/publications/files/page3_blog_entry23-f1-1.medium.gif" /><span style="font:15px HelveticaNeue-Light; color:#082650;">T Shimazu, MD Hirschey, J Newman, W He, K Shirakawa, N Le Moan, CA Grueter, H Lim, LR Saunders, RD Stevens, CB Newgard, RV Farese Jr., R de Cabo, S Ulrich, K Akassoglou, E Verdin (2012) Suppression of Oxidative Stress by &beta;-Hydroxybutyrate, an Endogenous Histone Deacetylase Inhibitor. Science, 2013 Jan 11;339(6116):211-4</span>]]></content:encoded></item><item><title>Whole-organism screening for gluconeogenesis identifies activators of fasting metabolism</title><dc:creator>matthew.hirschey@duke.edu</dc:creator><category>Publications</category><dc:date>2013-02-01T12:00:00-05:00</dc:date><link>http://lab.hirschey.org/publications/files/naturechembiol2012.html#unique-entry-id-22</link><guid isPermaLink="true">http://lab.hirschey.org/publications/files/naturechembiol2012.html#unique-entry-id-22</guid><content:encoded><![CDATA[<img class="imageStyle" alt="blogEntryThumbnail" width="138" height="179" src="http://lab.hirschey.org/publications/files/page3_blog_entry22-homecover.gif" /><span style="font:15px HelveticaNeue-Light; color:#082650;">P Gut, B Baeza-Raja, O Andersson, L Hasenkamp, D Hesselson, K Akassoglou, E Verdin, MD Hirschey and DYR Stainier. Whole-organism screening for gluconeogenesis identifies activators of fasting metabolism. Nature Chem. Biol. (2013) 9, 97&ndash;104</span>]]></content:encoded></item><item><title>HINT2 and Fatty Liver Disease: Mitochondrial Protein Hyperacetylation Gives A Hint?</title><dc:creator>matthew.hirschey@duke.edu</dc:creator><category>Publications</category><category>Perspective</category><dc:date>2012-09-18T12:00:00-04:00</dc:date><link>http://lab.hirschey.org/publications/files/hepatology2012.html#unique-entry-id-21</link><guid isPermaLink="true">http://lab.hirschey.org/publications/files/hepatology2012.html#unique-entry-id-21</guid><content:encoded><![CDATA[<img class="imageStyle" alt="blogEntryThumbnail" width="109" height="139" src="http://lab.hirschey.org/publications/files/page3_blog_entry21-cover.gif" /><span style="font:15px HelveticaNeue-Light; color:#082650;">KA Anderson*, D Wang* and MD Hirschey. HINT2 and Fatty Liver Disease: Mitochondrial Protein Hyperacetylation Gives A Hint? Hepatology (2012) In press</span>]]></content:encoded></item><item><title>Mitochondrial protein acetylation regulates metabolism</title><dc:creator>matthew.hirschey@duke.edu</dc:creator><category>Publications</category><dc:date>2012-06-01T12:00:00-04:00</dc:date><link>http://lab.hirschey.org/publications/files/eib2012.html#unique-entry-id-20</link><guid isPermaLink="true">http://lab.hirschey.org/publications/files/eib2012.html#unique-entry-id-20</guid><content:encoded><![CDATA[<img class="imageStyle" alt="blogEntryThumbnail" width="208" height="305" src="http://lab.hirschey.org/publications/files/page3_blog_entry20-eib_cover_small.jpg" /><span style="font:15px HelveticaNeue-Light; color:#082650;">KA Anderson and MD Hirschey (2012) Mitochondrial protein acetylation regulates metabolism. Essays in Biochemistry, 52:23-35.</span>]]></content:encoded></item><item><title>Hepatic Insulin Signaling Is Required for Obesity-Dependent Expression of SREBP-1c mRNA but Not for Feeding-Dependent Expression</title><dc:creator>matthew.hirschey@duke.edu</dc:creator><category>Publications</category><dc:date>2012-06-06T12:00:00-04:00</dc:date><link>http://lab.hirschey.org/publications/files/cellmetab2012.html#unique-entry-id-19</link><guid isPermaLink="true">http://lab.hirschey.org/publications/files/cellmetab2012.html#unique-entry-id-19</guid><content:encoded><![CDATA[<img class="imageStyle" alt="blogEntryThumbnail" width="144" height="185" src="http://lab.hirschey.org/publications/files/page3_blog_entry19-s1550413112x00068_covhighres.jpg" /><span style="font:15px HelveticaNeue-Light; color:#082650;">Joel T. Haas, Ji Miao, Dipanjan Chanda, Yanning Wang, Enpeng Zhao, Mary E. Haas, Matthew Hirschey, B. Vaitheesvaran, Robert V. Farese, Irwin J. Kurland, Mark Graham, Rosanne Crooke, Fabienne Foufelle, Sudha B. Biddinger (2012) Hepatic Insulin Signaling Is Required for Obesity-Dependent Expression of SREBP-1c mRNA but Not for Feeding-Dependent Expression. Cell Metab. Jun 6;15(6):873.</span>]]></content:encoded></item><item><title>SIRT3 Weighs Heavily in the Metabolic Balance: A New Role for SIRT3 in Metabolic Syndrome</title><dc:creator>matthew.hirschey@duke.edu</dc:creator><category>Publications</category><category>Perspective</category><dc:date>2013-02-01T12:00:00-05:00</dc:date><link>http://lab.hirschey.org/publications/files/jgbs2012.html#unique-entry-id-17</link><guid isPermaLink="true">http://lab.hirschey.org/publications/files/jgbs2012.html#unique-entry-id-17</guid><content:encoded><![CDATA[<img class="imageStyle" alt="blogEntryThumbnail" width="142" height="183" src="http://lab.hirschey.org/publications/files/page3_blog_entry17-2.cover.gif" /><span style="font:15px HelveticaNeue-Light; color:#082650;">Michelle F Green and Matthew D Hirschey (2012) SIRT3 Weighs Heavily in the Metabolic Balance: A New Role for SIRT3 in Metabolic Syndrome. Journal of Gerontology: Biological Science. 2013 </span><span style="font:15px HelveticaNeue-LightItalic; color:#082650;"><em>68(2):105-7.</em></span><span style="font:15px HelveticaNeue-Light; color:#082650;"><br /><br /></span>]]></content:encoded></item><item><title>Deficiency of the lipid synthesis enzyme&#x2c; DGAT1&#x2c; extends longevity in mice</title><dc:creator>matthew.hirschey@duke.edu</dc:creator><category>Publications</category><dc:date>2012-01-29T12:00:00-05:00</dc:date><link>http://lab.hirschey.org/publications/files/aging2012.html#unique-entry-id-16</link><guid isPermaLink="true">http://lab.hirschey.org/publications/files/aging2012.html#unique-entry-id-16</guid><content:encoded><![CDATA[<img class="imageStyle" alt="blogEntryThumbnail" width="108" height="158" src="http://lab.hirschey.org/publications/files/page3_blog_entry16-currentcover.png" /><span style="font:15px HelveticaNeue-Light; color:#082650;">Ryan S. Streeper*, Carrie A. Grueter*, Nathan Salomonis, Sylvaine Cases, Malin C. Levin, Suneil K. Koliwad, Ping Zhou, Matthew D. Hirschey, Eric Verdin, and Robert V. Farese, Jr. (2012) Deficiency of the lipid synthesis enzyme, DGAT1, extends longevity in mice. Aging, 4 (1), 13-27<br /></span>]]></content:encoded></item><item><title>Old Enzymes&#x2c; New Tricks: Sirtuins Are NAD(+)-Dependent De-acylases</title><dc:creator>matthew.hirschey@duke.edu</dc:creator><category>Publications</category><category>Perspective</category><category>Featured</category><dc:date>2011-12-07T12:00:00-05:00</dc:date><link>http://lab.hirschey.org/publications/files/cellmetab2011.html#unique-entry-id-15</link><guid isPermaLink="true">http://lab.hirschey.org/publications/files/cellmetab2011.html#unique-entry-id-15</guid><content:encoded><![CDATA[<img class="imageStyle" alt="blogEntryThumbnail" width="162" height="208" src="http://lab.hirschey.org/publications/files/page3_blog_entry15-s1550413111x00128_covlowres.jpg" /><span style="font:15px HelveticaNeue-Light; color:#082650;">Hirschey MD (2011) Old Enzymes, New Tricks: Sirtuins Are NAD(+)-Dependent De-acylases. Cell Metab. Dec 7;14(6):718.</span>]]></content:encoded></item><item><title>SIRT3 Regulates Mitochondrial Protein Acetylation and Intermediary Metabolism</title><dc:creator>matthew.hirschey@duke.edu</dc:creator><category>Publications</category><category>Review</category><dc:date>2011-12-31T12:00:00-05:00</dc:date><link>http://lab.hirschey.org/publications/files/cshl2011.html#unique-entry-id-11</link><guid isPermaLink="true">http://lab.hirschey.org/publications/files/cshl2011.html#unique-entry-id-11</guid><content:encoded><![CDATA[<img class="imageStyle" alt="blogEntryThumbnail" width="125" height="158" src="http://lab.hirschey.org/publications/files/page3_blog_entry11-76.cover.gif" /><span style="font:15px HelveticaNeue-Light; color:#082650;">MD Hirschey, T Shimazu, J-Y Huang, B Schwer, and E Verdin (2011) SIRT3 Regulates Mitochondrial Protein Acetylation and Intermediary Metabolism. Metabolism and Disease (Cold Spring Harbor Symposia on Quantitative Biology) 76: 267-77<br /></span>]]></content:encoded></item><item><title>SIRT3 Deficiency and Mitochondrial Protein Hyperacetylation Accelerate the Development of the Metabolic Syndrome</title><dc:creator>matthew.hirschey@duke.edu</dc:creator><category>Publications</category><category>Featured</category><dc:date>2011-08-18T12:00:00-04:00</dc:date><link>http://lab.hirschey.org/publications/files/molcell2011.html#unique-entry-id-10</link><guid isPermaLink="true">http://lab.hirschey.org/publications/files/molcell2011.html#unique-entry-id-10</guid><content:encoded><![CDATA[<img class="imageStyle" alt="blogEntryThumbnail" width="591" height="768" src="http://lab.hirschey.org/publications/files/page3_blog_entry10-s1097276511x00205_covhighres.jpg" /><span style="font:15px HelveticaNeue-Light; color:#082650;">MD Hirschey, T Shimazu, E Jing, CA Grueter, AM Collins, B Aouizerat, A Stan</span><span style="font:15px &#39;Lucida Grande&#39;, LucidaGrande, Verdana, sans-serif; color:#082650;">č</span><span style="font:15px HelveticaNeue-Light; color:#082650;">&aacute;kov&aacute;, E Goetzman, MM Lam, B Schwer, RD Stevens, MJ Muehlbauer, S Kakar, NM Bass, J Kuusisto, M Laakso, FW Alt, CB Newgard, RV Farese Jr., CR Kahn and E Verdin (2011) SIRT3 Deficiency and Mitochondrial Protein Hyperacetylation Accelerate the Development of the Metabolic Syndrome. Molecular Cell, </span><span style="font:15px HelveticaNeue-LightItalic; color:#082650;"><em>In press</em></span><span style="font:15px HelveticaNeue-Light; color:#082650;"><br /></span>]]></content:encoded></item><item><title>SIRT1 and SIRT3 Deacetylate Homologous Substrates: AceCS1&#x2c;2 and HMGCS1&#x2c;2</title><dc:creator>matthew.hirschey@duke.edu</dc:creator><category>Publications</category><category>Perspective</category><dc:date>2011-06-19T13:00:00-04:00</dc:date><link>http://lab.hirschey.org/publications/files/aging2011.html#unique-entry-id-9</link><guid isPermaLink="true">http://lab.hirschey.org/publications/files/aging2011.html#unique-entry-id-9</guid><content:encoded><![CDATA[<img class="imageStyle" alt="blogEntryThumbnail" width="100" height="150" src="http://lab.hirschey.org/publications/files/page3_blog_entry9-cover_v3n6.png" /><span style="font:15px HelveticaNeue-Light; color:#082650;">MD Hirschey*, T Shimazu*, JA Capra*, KS Pollard, and E Verdin. (2011) SIRT1 and SIRT3 Deacetylate Homologous Substrates: AceCS1,2 and HMGCS1,2. AGING 3, 1&ndash;8<br /><br /></span>]]></content:encoded></item><item><title>Calorie restriction reduces oxidative stress by SIRT3-mediated SOD2 activation</title><dc:creator>matthew.hirschey@duke.edu</dc:creator><category>Publications</category><dc:date>2010-12-01T15:00:01-05:00</dc:date><link>http://lab.hirschey.org/publications/files/cellmetab2010b.html#unique-entry-id-8</link><guid isPermaLink="true">http://lab.hirschey.org/publications/files/cellmetab2010b.html#unique-entry-id-8</guid><content:encoded><![CDATA[<img class="imageStyle" alt="blogEntryThumbnail" width="127" height="164" src="http://lab.hirschey.org/publications/files/page3_blog_entry8-shapeimage_2.png" /><span style="font:15px HelveticaNeue-Light; color:#082650;">Qiu X, Brown K, Hirschey MD, Verdin E, Chen D. (2010) Calorie restriction reduces oxidative stress by SIRT3-mediated SOD2 activation. Cell Metab. Dec 1;12(6):662-7.<br /></span>]]></content:encoded></item><item><title>SIRT3 deacetylates mitochondrial 3-hydroxy-3-methylglutaryl CoA synthase 2 and regulates ketone body production</title><dc:creator>matthew.hirschey@duke.edu</dc:creator><category>Publications</category><category>Featured</category><dc:date>2010-12-01T15:00:00-05:00</dc:date><link>http://lab.hirschey.org/publications/files/cellmetab2010a.html#unique-entry-id-7</link><guid isPermaLink="true">http://lab.hirschey.org/publications/files/cellmetab2010a.html#unique-entry-id-7</guid><content:encoded><![CDATA[<img class="imageStyle" alt="blogEntryThumbnail" width="127" height="164" src="http://lab.hirschey.org/publications/files/page3_blog_entry7-shapeimage_2.png" /><span style="font:15px HelveticaNeue-Light; color:#082650;">Shimazu T, Hirschey MD, Hua L, Dittenhafer-Reed KE, Schwer B, Lombard DB, Li Y, Bunkenborg J, Alt FW, Denu JM, Jacobson MP, Verdin E. (2010) SIRT3 deacetylates mitochondrial 3-hydroxy-3-methylglutaryl CoA synthase 2 and regulates ketone body production. Cell Metab. Dec 1;12(6):654-61.</span>]]></content:encoded></item><item><title>Sirtuin regulation of mitochondria: energy production&#x2c; apoptosis&#x2c; and signaling</title><dc:creator>matthew.hirschey@duke.edu</dc:creator><category>Publications</category><category>Review</category><dc:date>2010-09-20T15:00:00-04:00</dc:date><link>http://lab.hirschey.org/publications/files/tibs2010.html#unique-entry-id-6</link><guid isPermaLink="true">http://lab.hirschey.org/publications/files/tibs2010.html#unique-entry-id-6</guid><content:encoded><![CDATA[<img class="imageStyle" alt="blogEntryThumbnail" width="127" height="164" src="http://lab.hirschey.org/publications/files/page3_blog_entry6-object011.jpg" /><span style="font:15px HelveticaNeue-Light; color:#082650;">Verdin E, Hirschey MD, Finley LW, Haigis MC. (2010) Sirtuin regulation of mitochondria: energy production, apoptosis, and signaling. Trends Biochem Sci. Dec;35(12):669-75. Epub 2010 Sep 20.<br /></span>]]></content:encoded></item><item><title>Acetate metabolism and aging: An emerging connection</title><dc:creator>matthew.hirschey@duke.edu</dc:creator><category>Publications</category><category>Review</category><dc:date>2010-05-15T15:00:00-04:00</dc:date><link>http://lab.hirschey.org/publications/files/mad2010.html#unique-entry-id-5</link><guid isPermaLink="true">http://lab.hirschey.org/publications/files/mad2010.html#unique-entry-id-5</guid><content:encoded><![CDATA[<img class="imageStyle" alt="blogEntryThumbnail" width="127" height="164" src="http://lab.hirschey.org/publications/files/page3_blog_entry5-object010.jpg" /><span style="font:15px HelveticaNeue-Light; color:#082650;">Shimazu T, Hirschey MD, Huang JY, Ho LT, Verdin E. (2010) Acetate metabolism and aging: An emerging connection. Mech Ageing Dev. Jul-Aug;131(7-8):511-6. Epub 2010 May 15.</span>]]></content:encoded></item><item><title>SIRT3 regulates mitochondrial fatty-acid oxidation by reversible enzyme deacetylation</title><dc:creator>matthew.hirschey@duke.edu</dc:creator><category>Publications</category><category>Featured</category><dc:date>2010-03-04T15:00:00-05:00</dc:date><link>http://lab.hirschey.org/publications/files/nature2010.html#unique-entry-id-4</link><guid isPermaLink="true">http://lab.hirschey.org/publications/files/nature2010.html#unique-entry-id-4</guid><content:encoded><![CDATA[<img class="imageStyle" alt="blogEntryThumbnail" width="127" height="164" src="http://lab.hirschey.org/publications/files/page3_blog_entry4-object001.jpg" /><span style="font:15px HelveticaNeue-Light; color:#082650;">Hirschey MD, Shimazu T, Goetzman E, Jing E, Schwer B, Lombard DB, Grueter CA, Harris C, Biddinger S, Ilkayeva OR, Stevens RD, Li Y, Saha AK, Ruderman NB, Bain JR, Newgard CB, Farese RV Jr, Alt FW, Kahn CR, Verdin E. (2010) SIRT3 regulates mitochondrial fatty-acid oxidation by reversible enzyme deacetylation. Nature, 464, 121-125</span>]]></content:encoded></item><item><title>Mitochondrial Sirtuins</title><dc:creator>matthew.hirschey@duke.edu</dc:creator><category>Publications</category><category>Review</category><dc:date>2010-01-07T15:00:00-05:00</dc:date><link>http://lab.hirschey.org/publications/files/bba2010.html#unique-entry-id-3</link><guid isPermaLink="true">http://lab.hirschey.org/publications/files/bba2010.html#unique-entry-id-3</guid><content:encoded><![CDATA[<img class="imageStyle" alt="blogEntryThumbnail" width="127" height="164" src="http://lab.hirschey.org/publications/files/page3_blog_entry3-shapeimage_2-1.png" /><span style="font:15px HelveticaNeue-Light; color:#082650;">Huang JY, Hirschey MD, Shimazu T, Ho L, Verdin E. (2010) Mitochondrial Sirtuins. Biochim Biophys Acta. 2010 Jan 7.<br /></span>]]></content:encoded></item><item><title>Acetylation of mitochondrial proteins</title><dc:creator>matthew.hirschey@duke.edu</dc:creator><category>Publications</category><category>Methods</category><dc:date>2009-05-06T15:00:00-04:00</dc:date><link>http://lab.hirschey.org/publications/files/mie2009.html#unique-entry-id-2</link><guid isPermaLink="true">http://lab.hirschey.org/publications/files/mie2009.html#unique-entry-id-2</guid><content:encoded><![CDATA[<img class="imageStyle" alt="blogEntryThumbnail" width="124" height="164" src="http://lab.hirschey.org/publications/files/page3_blog_entry2-shapeimage_2-2.png" /><span style="font:15px HelveticaNeue-Light; color:#082650;">Hirschey MD, Shimazu T, Huang JY, Verdin E. (2009) Acetylation of mitochondrial proteins. Methods Enzymol. 2009;457:137-47.<br /></span>]]></content:encoded></item><item><title>Mammalian Sir2 Homolog SIRT3 Regulates Global Mitochondrial Lysine Acetylation</title><dc:creator>matthew.hirschey@duke.edu</dc:creator><category>Publications</category><dc:date>2007-10-08T15:00:00-04:00</dc:date><link>http://lab.hirschey.org/publications/files/mcb2007.html#unique-entry-id-1</link><guid isPermaLink="true">http://lab.hirschey.org/publications/files/mcb2007.html#unique-entry-id-1</guid><content:encoded><![CDATA[<img class="imageStyle" alt="blogEntryThumbnail" width="127" height="164" src="http://lab.hirschey.org/publications/files/page3_blog_entry1-shapeimage_2-3.png" /><span style="font:15px HelveticaNeue-Light; color:#082650;">Lombard DB, Alt FW, Cheng HL, Bunkenborg J, Streeper RS, Mostoslavsky R, Kim J, Yancopoulos G, Valenzuela D, Murphy A, Yang Y, Chen Y, Hirschey MD, Bronson RT, Haigis M, Guarente LP, Farese RV Jr, Weisssman S, Verdin E, Schwer B (2007). Mammalian Sir2 Homolog SIRT3 Regulates Global Mitochondrial Lysine Acetylation. Mol. Cell Biol. Epub Oct. 8</span>]]></content:encoded></item><item><title>Imaging Escherichia coli using functionalized core/shell CdSe/CdS quantum dots</title><dc:creator>matthew.hirschey@duke.edu</dc:creator><category>Publications</category><dc:date>2006-05-25T15:00:00-04:00</dc:date><link>http://lab.hirschey.org/publications/files/jbic2006.html#unique-entry-id-0</link><guid isPermaLink="true">http://lab.hirschey.org/publications/files/jbic2006.html#unique-entry-id-0</guid><content:encoded><![CDATA[<img class="imageStyle" alt="blogEntryThumbnail" width="127" height="164" src="http://lab.hirschey.org/publications/files/page3_blog_entry0-shapeimage_2-4.png" /><span style="font:15px HelveticaNeue-Light; color:#082650;">Hirschey MD, Han YJ, Stucky GD, Butler A. (2006) Imaging Escherichia coli using functionalized core/shell CdSe/CdS quantum dots. J. Bio. Inorg. Chem. Jul;11(5):663-9. Epub 2006 May 25.<br /></span>]]></content:encoded></item><item><title>Sirtuin-3 (Sirt3) regulates skeletal muscle metabolism and insulin signaling via altered mitochondrial oxidation and reactive oxygen species production</title><dc:creator>matthew.hirschey@duke.edu</dc:creator><category>Publications</category><dc:date>2011-08-22T12:00:00-04:00</dc:date><link>http://lab.hirschey.org/publications/files/pnas2011.html#unique-entry-id-14</link><guid isPermaLink="true">http://lab.hirschey.org/publications/files/pnas2011.html#unique-entry-id-14</guid><content:encoded><![CDATA[<img class="imageStyle" alt="blogEntryThumbnail" width="134" height="178" src="http://lab.hirschey.org/publications/files/page3_blog_entry14-35.cover.gif" /><span style="font:15px HelveticaNeue-Light; color:#082650;">Enxuan Jing, Brice Emanuelli, Matthew D. Hirschey, Jeremie Boucher, Kevin Y. Lee, David Lombard, Eric M. Verdin, and C. Ronald Kahn (2011) Sirtuin-3 (Sirt3) regulates skeletal muscle metabolism and insulin signaling via altered mitochondrial oxidation and reactive oxygen species production. PNAS, </span><span style="font:15px HelveticaNeue-LightItalic; color:#082650;"><em>In press</em></span>]]></content:encoded></item><item><title>Mitochondrial Acetylome Analysis in a Mouse Model of Alcohol-Induced Liver Injury Utilizing SIRT3 Knockout Mice</title><dc:creator>matthew.hirschey@duke.edu</dc:creator><category>Publications</category><dc:date>2012-03-02T12:00:00-05:00</dc:date><link>http://lab.hirschey.org/publications/files/jpr2012.html#unique-entry-id-18</link><guid isPermaLink="true">http://lab.hirschey.org/publications/files/jpr2012.html#unique-entry-id-18</guid><content:encoded><![CDATA[<img class="imageStyle" alt="blogEntryThumbnail" width="140" height="183" src="http://lab.hirschey.org/publications/files/page3_blog_entry18-jprobs.2012.11.issue-3.largecover.jpg" /><span style="font:15px HelveticaNeue-Light; color:#082650;">Kristofer S Fritz, James Joseph Galligan, Matthew Hirschey, Eric Verdin, and Dennis R. Petersen (2012) Mitochondrial Acetylome Analysis in a Mouse Model of Alcohol-Induced Liver Injury Utilizing SIRT3 Knockout Mice. Journal of Proteome Research. 2012 </span><span style="font:15px HelveticaNeue-LightItalic; color:#082650;"><em>11(3):1633-43.</em></span><span style="font:15px HelveticaNeue-Light; color:#082650;"><br /></span>]]></content:encoded></item></channel>
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