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Publication list

publication_uri type publication_title year doi pmid journal_uri
http://vivo.scripps.edu/individual/e2n247119 AcademicArticle Phosphorylation of Tip60 by p38α regulates p53-mediated PUMA induction and apoptosis in response to DNA damage 2014 10.18632/oncotarget.2717 25544752 http://vivo.scripps.edu/individual/endnote45850
http://vivo.scripps.edu/individual/e2n236821 AcademicArticle The high-risk HPV16 E7 oncoprotein mediates interaction between the transcriptional coactivator CBP and the retinoblastoma protein pRb 2014 10.1016/j.jmb.2014.10.021 25451029 http://vivo.scripps.edu/individual/endnote261742
http://vivo.scripps.edu/individual/e1n304656 AcademicArticle A posttranslational modification cascade involving p38, Tip60, and PRAK mediates oncogene-induced senescence 2013 10.1016/j.molcel.2013.04.013 23685072 http://vivo.scripps.edu/individual/endnote331988
http://vivo.scripps.edu/individual/endnote218141 AcademicArticle A novel function of p38-regulated/activated kinase in endothelial cell migration and tumor angiogenesis 2012 10.1128/mcb.06301-11 22124154 http://vivo.scripps.edu/individual/endnote52493
http://vivo.scripps.edu/individual/enote70826 AcademicArticle Attenuation of TORC1 signaling delays replicative and oncogenic RAS-induced senescence 2012 10.4161/cc.20683 22627671 http://vivo.scripps.edu/individual/endnote1780
http://vivo.scripps.edu/individual/enote230091 AcademicArticle PRAK suppresses oncogenic ras-induced hematopoietic cancer development by antagonizing the JNK pathway 2012 10.1158/1541-7786.mcr-11-0576 22665523 http://vivo.scripps.edu/individual/endnote324150
http://vivo.scripps.edu/individual/endnote56198 AcademicArticle The miR-17-92 cluster of microRNAs confers tumorigenicity by inhibiting oncogene-induced senescence 2010 10.1158/0008-5472.can-10-1938 20851997 http://vivo.scripps.edu/individual/endnote44772
http://vivo.scripps.edu/individual/endnote369698 AcademicArticle p38α and p38γ mediate oncogenic ras-induced senescence through differential mechanisms 2009 10.1074/jbc.M808327200 19251701 http://vivo.scripps.edu/individual/endnote308813
http://vivo.scripps.edu/individual/endnote336205 AcademicArticle The RING finger domain of MDM2 is essential for MDM2-mediated TGF-β resistance 2007 10.1091/mbc.E06-09-0844 17429071 http://vivo.scripps.edu/individual/endnote312044
http://vivo.scripps.edu/individual/endnote328323 AcademicArticle PRAK is essential for ras-induced senescence and tumor suppression 2007 10.1016/j.cell.2006.11.050 17254968 http://vivo.scripps.edu/individual/endnote126238
http://vivo.scripps.edu/individual/endnote264533 AcademicArticle The ability of E1A to rescue ras-induced premature senescence and confer transformation relies on inactivation of both p300/CBP and Rb family proteins 2005 10.1158/0008-5472.CAN-05-0054 16166306 http://vivo.scripps.edu/individual/endnote44772
http://vivo.scripps.edu/individual/endnote10226 AcademicArticle High intensity ras signaling induces premature senescence by activating p38 pathway in primary human fibroblasts 2004 10.1074/jbc.M308644200 14593117 http://vivo.scripps.edu/individual/endnote308813
http://vivo.scripps.edu/individual/endnote394811 AcademicArticle The SCF(Skp2) ubiquitin ligase complex interacts with the human replication licensing factor Cdt1 and regulates Cdt1 degradation 2003 10.1074/jbc.C300251200 12840033 http://vivo.scripps.edu/individual/endnote308813
http://vivo.scripps.edu/individual/endnote45748 AcademicArticle Sequential activation of the MEK-extracellular signal-regulated kinase and MKK3/6-p38 mitogen-activated protein kinase pathways mediates oncogenic ras-induced premature senescence 2002 10.1128/mcb.22.10.3389-3403.2002 11971971 http://vivo.scripps.edu/individual/endnote52493

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