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Multiple domains of the Receptor-Interacting Protein 140 contribute to transcription inhibition

机译:受体相互作用蛋白140的多个域有助于转录抑制

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摘要

In this study, we have investigated the role of C-terminal binding proteins (CtBPs) and histone deacetylases (HDACs) in the repressive activity of the nuclear receptor cofactor Receptor-Interacting Protein 140 (RIP140). We have defined the interaction of both CtBP1 and CtBP2 with RIP140 and delineated two motifs (PIDLS and PINLS) differentially required for in vitro interaction. Using different approaches (titration of endogenous CtBPs, mutagenesis and transfection in CtBP knock-out cells), we find that recruitment of CtBPs only partially explains the negative regulation exerted by RIP140. We then demonstrate that RIP140 associates in vitro not only with class I HDACs but also with class II enzymes such as HDAC5. This interaction mainly involves the N-terminus of RIP140 (residues 27–199) and two domains of HDAC5. Moreover, the two proteins functionally interfere in transfection experiments, and confocal microscopy indicates that they co-localize in the nucleus. Interestingly, using the specific HDAC inhibitor trichostatin A, we show that HDAC activity is dispensable for active transrepression by RIP140. Finally, we demonstrate that the C-terminal region of RIP140 contains two additional silencing domains and confers strong active transrepression independently of HDAC activity and CtBPs. Altogether, these data indicate that transcriptional inhibition by the cofactor RIP140 involves complex mechanisms relying on multiple domains and partners.
机译:在这项研究中,我们研究了C末端结合蛋白(CtBPs)和组蛋白脱乙酰基酶(HDACs)在核受体辅因子受体相互作用蛋白140(RIP140)的抑制活性中的作用。我们已经定义了CtBP1和CtBP2与RIP140的相互作用,并描述了两个不同的体外相互作用所需的基序(PIDLS和PINLS)。使用不同的方法(内源CtBP的滴定,CtBP敲除细胞的诱变和转染),我们发现CtBP的募集仅部分解释了RIP140施加的负调控。然后,我们证明RIP140不仅在体外与I类HDAC关联,而且与II类酶(例如HDAC5)关联。这种相互作用主要涉及RIP140的N端(残基27-199)和HDAC5的两个域。此外,这两种蛋白在功能上干扰转染实验,共聚焦显微镜表明它们共定位于细胞核中。有趣的是,使用特定的HDAC抑制剂曲古抑菌素A,我们显示HDAC活性对于RIP140的主动反式抑制是必不可少的。最后,我们证明RIP140的C端区域包含两个额外的沉默域,并独立于HDAC活性和CtBPs赋予强大的主动反式抑制作用。总而言之,这些数据表明辅因子RIP140的转录抑制涉及依赖于多个结构域和伴侣的复杂机制。

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