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<!--Generated by Squarespace Site Server v5.11.81 (http://www.squarespace.com/) on Mon, 13 Feb 2012 19:23:03 GMT--><rss xmlns:content="http://purl.org/rss/1.0/modules/content/" xmlns:wfw="http://wellformedweb.org/CommentAPI/" xmlns:itunes="http://www.itunes.com/dtds/podcast-1.0.dtd" xmlns:dc="http://purl.org/dc/elements/1.1/" version="2.0"><channel><title>Papers</title><link>http://www.deppmannlab.com/papers/</link><description></description><lastBuildDate>Wed, 03 Nov 2010 17:26:34 +0000</lastBuildDate><copyright></copyright><language>en-US</language><generator>Squarespace Site Server v5.11.81 (http://www.squarespace.com/)</generator><item><title>Papers</title><dc:creator>Chris Deppmann</dc:creator><pubDate>Thu, 18 Jun 2009 02:03:35 +0000</pubDate><link>http://www.deppmannlab.com/papers/2009/6/17/papers.html</link><guid isPermaLink="false">381256:4121252:4361453</guid><description><![CDATA[<p>Sharma N, Deppmann C.D., Harrington A.W., St Hillaire C., Chen Z.Y., Lee F.S., Ginty D.D. (2010) Long-Distance Control of Synapse Assembly by Target-Derived NGF. <span class="jrnl" title="Neuron"><em>Neuron</em></span>. 2010 Aug 12;67(3):422-34. <a href="http://www.ncbi.nlm.nih.gov/pubmed/20696380">Link</a></p>
<p class="aux" style="padding-left: 30px;"><strong><span style="font-weight: normal;"><strong>See Also:</strong><br /><a href="http://www.cell.com/neuron/retrieve/pii/S0896627310005568">Video Abstract</a></span><span style="white-space: pre;"><a href="http://www.cell.com/neuron/retrieve/pii/S0896627310005568"></a></span></strong></p>
<p class="aux" style="padding-left: 30px;">Newbern, J.M., Li, X., Snider, W.D. (2010) Signaling Endosomes Trigger Synapse Assembly.&nbsp;&nbsp;<em><span class="jrnl" title="Neuron"><em>Neuron</em></span>.&nbsp;</em>&nbsp;Aug 12;67(3):352-4.&nbsp;<a href="http://www.ncbi.nlm.nih.gov/pubmed/20696371">Link</a></p>
<p class="aux" style="padding-left: 30px;"><em>Faculty of 1000:</em>&nbsp;evaluations for Sharma et al., Neuron (2010) <a href="http://f1000.com/5090956#evaluations">Link</a>&nbsp;</p>
<p>Deppmann, C.D., Mihalas, S., Sharma, N., Lonze, B.E., Niebur, E, Ginty D.D. (2008) A Model for Neuronal Competition During Development. <em>Science</em>, 320(5874) 369-73.&nbsp; <a href="http://www.sciencemag.org/cgi/content/full/320/5874/369">Link</a></p>
<p style="padding-left: 30px;"><strong>Reviewed By:</strong><br />Davies, A.M. (2008) Neurotrophins giveth and they taketh away. <em>Nat. Neuro</em>. 11(6):627-8. <a href="http://www.nature.com/neuro/journal/v11/n6/full/nn0608-627.html">Link<br /></a></p>
<p style="padding-left: 30px;">Li, Y., Fivaz, M. (2008) Feedback-mediated neuronal competition for survival cues regulates innervation of a target tissue. <em>Bioessays</em>. 30(10):929-33 <a href="http://www3.interscience.wiley.com/journal/121411700/abstract?CRETRY=1&amp;SRETRY=0">Link</a></p>
<p style="padding-left: 30px;"><em>Faculty of 1000 Medicine:</em> evaluations for Deppmann CD et al Science 2008 Apr 18 320 (5874) :369-73 <a href="http://www.f1000medicine.com/article/id/1117911/evaluation">http://www.f1000medicine.com/article/id/1117911/evaluation</a></p>
<p><br />Deppmann, C.D., Ginty D.D. (2006) Retrograde Control of Neural Circuit Formation. <em>Cell</em> 127(7) 1306-7. <a href="http://www.sciencedirect.com/science?_ob=ArticleURL&amp;_udi=B6WSN-4MP07P3-8&amp;_user=75682&amp;_rdoc=1&amp;_fmt=&amp;_orig=search&amp;_sort=d&amp;_docanchor=&amp;view=c&amp;_acct=C000006078&amp;_version=1&amp;_urlVersion=0&amp;_userid=75682&amp;md5=abfa1534b1606fca47bdaf1a51380ef3">Link<br /></a><br />Deppmann, C.D., Alvania, R.A., Taparowsky, E.J. (2006) Cross-species Annotation of Basic Leucine Zipper Factor Interactions: Insight Into the Evolution of Closed Interaction Networks. <em>Mol. Biol. Evol.</em> 23(8), 1480-92. <a href="http://mbe.oxfordjournals.org/cgi/content/full/23/8/1480">Link<br /></a><br />Deppmann, C.D., Acharya, A., Rishi, V., Wobbes, B., Smeekens, S., Taparowsky, E.J., Vinson, C. (2004). Dimerization Specificity of All 67 B-ZIP Motifs in Arabidopsis thaliana: A Comparison to Homo sapiens B-ZIP Motifs. <em>Nuc. Acids Res</em>. 32(11), 3435-45. <a href="http://nar.oxfordjournals.org/cgi/content/full/32/11/3435">Link</a><br /><br />Deppmann, C.D., Thornton T.M., Utama, F.E., Taparowsky, E.J. (2003). Phosphorylation of BATF Regulates DNA binding: a Novel Mechanism for AP-1 (Activator Protein-1) Regulation. <em>Biochem J.</em> 374(Pt 2), 423-31.&nbsp;&nbsp; <a href="http://www.biochemj.org/bj/374/0423/bj3740423.htm">Link<br /></a><br />Johansen L.M., Deppmann, C.D., Erickson K.D., Coffin W.F. 3rd, Thornton T.M., Humphrey S.E., Martin, J.M. Taparowsky, E.J. (2003). BATF is a Cellular Target of the Epstein-Barr Virus Transactivator Protein, EBNA-2. <em>J. Virol.</em> 77, 6029-40.&nbsp; <a href="http://jvi.asm.org/cgi/content/full/77/10/6029?view=long&amp;pmid=12719594">Link<br /></a><br />Williams K.L., Zullo, A.J., Kaplan, M.H., Brutkiewicz, R.R., Deppmann, C.D., Vinson C, Taparowsky, E.J. (2003). BATF Transgenic Mice Reveal a Role for AP-1 in NKT Cell Development. <em>J. Immunol.</em> 170, 2417-26.&nbsp; <a href="http://www.jimmunol.org/cgi/content/full/170/5/2417">Link</a><br /><br />Deppmann, C.D., Taparowsky, E.J. (2003). Reverse-polarity PAGE for examining DNA binding domain phosphorylation. <em>Biotechniques</em>. 34, 56-9.</p>]]></description><wfw:commentRss>http://www.deppmannlab.com/papers/rss-comments-entry-4361453.xml</wfw:commentRss></item></channel></rss>
