首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >PNAS Plus: Human Polymerase-Associated Factor complex (PAFc) connects the Super Elongation Complex (SEC) to RNA polymerase II on chromatin
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PNAS Plus: Human Polymerase-Associated Factor complex (PAFc) connects the Super Elongation Complex (SEC) to RNA polymerase II on chromatin

机译:PNAS Plus:人类聚合酶相关因子复合物(PAFc)将超级延伸复合物(SEC)连接到染色质上的RNA聚合酶II

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摘要

The Super Elongation Complex (SEC), containing transcription elongation activators/coactivators P-TEFb, ELL2, AFF4/1, ENL, and AF9, is recruited by HIV-1 Tat and mixed lineage leukemia (MLL) proteins to activate the expression of HIV-1 and MLL-target genes, respectively. In the absence of Tat and MLL, however, it is unclear how SEC is targeted to RNA polymerase (Pol) II to stimulate elongation in general. Furthermore, although ENL and AF9 can bind the H3K79 methyltransferase Dot1L, it is unclear whether these bindings are required for SEC-mediated transcription. Here, we show that the homologous ENL and AF9 exist in separate SECs with similar but nonidentical functions. ENL/AF9 contacts the scaffolding protein AFF4 that uses separate domains to recruit different subunits into SEC. ENL/AF9 also exists outside SEC when bound to Dot1L, which is found to inhibit SEC function. The YEATS domain of ENL/AF9 targets SEC to Pol II on chromatin through contacting the human Polymerase-Associated Factor complex (PAFc) complex. This finding explains the YEATS domain’s dispensability for leukemogenesis when ENL/AF9 is translocated to MLL, whose interactions with PAFc and DNA likely substitute for the PAFc/chromatin-targeting function of the YEATS domain.
机译:HIV-1 Tat和混合谱系白血病(MLL)蛋白招募了包含转录延伸激活因子/共激活因子P-TEFb,ELL2,AFF4 / 1,ENL和AF9的Super Elongation Complex(SEC),以激活HIV的表达-1和MLL靶基因。然而,在没有Tat和MLL的情况下,目前尚不清楚SEC如何靶向RNA聚合酶(Pol)II以刺激总体上的伸长。此外,尽管ENL和AF9可以结合H3K79甲基转移酶Dot1L,但尚不清楚这些结合是否是SEC介导的转录所必需的。在这里,我们表明同源ENL和AF9存在于具有相似但功能不同的单独SEC中。 ENL / AF9与脚手架蛋白AFF4接触,后者使用独立的结构域将不同的亚基募集到SEC中。当与Dot1L绑定时,ENL / AF9也存在于SEC外部,这被发现会抑制SEC功能。 ENL / AF9的YEATS结构域通过与人聚合酶相关因子复合物(PAFc)复合物接触,将SEC靶向染色质上的Pol II。这一发现解释了当ENL / AF9易位到MLL时,YEATS域对于白血病发生的可分配性,后者与PAFc和DNA的相互作用可能替代YEATS域的PAFc /染色质靶向功能。

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