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AF4 and AF4N protein complexes: recruitment of P-TEFb kinase their interactome and potential functions

机译:AF4和AF4N蛋白复合物:P-TEFb激酶的募集它们的相互作用和潜在功能

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摘要

AF4/AFF1 and AF5/AFF4 are the molecular backbone to assemble “super-elongation complexes” (SECs) that have two main functions: (1) control of transcriptional elongation by recruiting the positive transcription elongation factor b (P-TEFb = CyclinT1/CDK9) that is usually stored in inhibitory 7SK RNPs; (2) binding of different histone methyltransferases, like DOT1L, NSD1 and CARM1. This way, transcribed genes obtain specific histone signatures (e.g. H3K79me2/3, H3K36me2) to generate a transcriptional memory system. Here we addressed several questions: how is P-TEFb recruited into SEC, how is the AF4 interactome composed, and what is the function of the naturally occuring AF4N protein variant which exhibits only the first 360 amino acids of the AF4 full-length protein. Noteworthy, shorter protein variants are a specific feature of all AFF protein family members. Here, we demonstrate that full-length AF4 and AF4N are both catalyzing the transition of P-TEFb from 7SK RNP to their N-terminal domain. We have also mapped the protein-protein interaction network within both complexes. In addition, we have first evidence that the AF4N protein also recruits TFIIH and the tumor suppressor MEN1. This indicate that AF4N may have additional functions in transcriptional initiation and in MEN1-dependend transcriptional processes.
机译:AF4 / AFF1和AF5 / AFF4是组装“超伸长复合物”(SEC)的分子骨架,其具有两个主要功能:(1)通过募集正转录伸长因子b(P-TEFb = CyclinT1 / CDK9),通常存储在抑制性7SK RNP中; (2)结合不同的组蛋白甲基转移酶,如DOT1L,NSD1和CARM1。这样,转录的基因获得特定的组蛋白签名(例如H3K79me2 / 3,H3K36me2)以生成转录记忆系统。在这里,我们讨论了几个问题:如何将P-TEFb募集到SEC中,如何构成AF4相互作用组,以及天然存在的AF4N蛋白变体的功能是什么,该变体仅显示AF4全长蛋白的前360个氨基酸。值得注意的是,较短的蛋白质变体是所有AFF蛋白质家族成员的特定特征。在这里,我们证明全长AF4和AF4N都在催化P-TEFb从7SK RNP过渡到其N末端结构域。我们还绘制了两种复合物中的蛋白质-蛋白质相互作用网络。此外,我们有第一个证据表明AF4N蛋白还募集TFIIH和肿瘤抑制因子MEN1。这表明AF4N在转录起始和MEN1依赖性转录过程中可能具有其他功能。

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