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6篇 您的检索式:作者名="Elisma"
    题名 作者 年代 出处 被引量
1Largescale mapping of human protein-protein interactions by mass spectrometry显示文摘EWING R M CHU P ELISMA F 2007Molecular Systems Biology2007,3,:1
2查看详情显示文摘Zhou H J Elisma F Denis N J Wright T G Tian R J Zhou H Hou W M Zou H F Figeys D 0,,03:1
3查看详情显示文摘Tian R J Wang S Elisma F LiL Zhou H Wang LS Figeys D 0,,02:1
4Proteomie analyses of the SMYD family interactomes identify Hsp90 as a novel target for SMYD2 显示文摘Abu-Farha M Lanouette S Elisma F 2011J Mol Cell Biol2011,3,5:1
5Large-scale mapping of human protein-protein interactions by mass spectrometry 显示文摘Ewing RM Chu P Elisma F 2007Mol Syst Biol2007,3,:1
6Proteomic analyses of the SMYD family interactomes identify HSP90 as a novel target for SMYD2显示文摘The SMYD(SET and MYND domain)family of lysine methyltransferases(KMTs)plays pivotal roles in various cellular processes,including gene expression regulation and DNA damage response.Initially identified as genuine histone methyltransferases,specific members of this family have recently been shown to methylate non-histone proteins such as p53,VEGFR,and the retinoblastoma tumor suppressor(pRb).To gain further functional insights into this family of KMTs,we generated the protein interaction network for three different human SMYD proteins(SMYD2,SMYD3,and SMYD5).Characterization of each SMYD protein network revealed that they associate with both shared and unique sets of proteins.Among those,we found that HSP90 and several of its co-chaperones interact specifically with the tetratrico peptide repeat(TPR)-containing SMYD2 and SMYD3.Moreover,using proteomic and biochemical techniques,we provide evidence that SMYD2 methylates K209 and K615 on HSP90 nucleotide-binding and dimerization domains,respectively.In addition,we found that each methylation site displays unique reactivity in regard to the presence of HSP90 co-chaperones,pH,and demethylation by the lysine amine oxidase LSD1,suggesting that alternative mechanisms control HSP90 methylation by SMYD2.Altogether,this study highlights the ability of SMYD proteins to form unique protein complexes that may underlie their various biological functions and the SMYD2-mediated methylation of the key molecular chaperone HSP90.Mohamed Abu-Farha Sylvain Lanouette Fred Elisma Veronique Tremblay Jeffery Butson Daniel Figeys Jean-Francois Couture 2011Journal of Molecular Cell Biology2011,3,5:0
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