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Linking functions: an additional role for an intrinsically disordered linker domain in the transcriptional coactivator CBP

机译:链接功能:转录共激活因子CBP中内在无序的链接结构域的其他作用

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摘要

The multi-domain transcriptional coactivators CBP/p300 integrate a multitude of signaling inputs, interacting with more than 400 proteins via one or more of their globular domains. While CBP/p300 function is typically considered in terms of these structured domains, about half of the protein consists of intrinsically disordered regions (IDRs) of varying length. However, these IDRs have only been thought of as linkers that allow flexible spatial arrangement of the structured domains, but recent studies have shown that similar IDRs mediate specific and critical interactions in other proteins. To examine the roles of IDRs in CBP, we performed yeast-two-hybrid screenings of placenta and lung cancer cDNA libraries, which demonstrated that the long IDR linking the KIX domain and bromodomain of CBP (termed ID3) can potentially bind to several proteins. The RNA-binding Zinc-finger protein 106 (ZFP106) detected in both libraries was identified as a novel substrate for CBP-mediated acetylation. Nuclear magnetic resonance (NMR) spectroscopy combined with cross-linking experiments and competition-binding assays showed that the fully disordered isolated ID3 transiently interacts with an IDR of ZFP106 in a fashion that disorder of both regions is maintained. These findings demonstrate that beside the linking function, ID3 can also interact with acetylation substrates of CBP.
机译:多域转录共激活因子CBP / p300整合了多种信号输入,可通过一个或多个球状域与400多种蛋白质相互作用。虽然通常从这些结构域的角度考虑CBP / p300的功能,但大约一半的蛋白质由不同长度的内在无序区(IDR)组成。然而,这些IDR仅被认为是允许结构域的灵活空间排列的接头,但是最近的研究表明,相似的IDR介导其他蛋白质中的特异性和关键相互作用。为了检查IDR在CBP中的作用,我们对胎盘和肺癌cDNA文库进行了酵母双杂交筛选,这证明了将CBP的KIX域和溴域连接的长IDR(称为ID3)可能与几种蛋白质结合。在两个库中检测到的RNA结合锌指蛋白106(ZFP106)被确定为CBP介导的乙酰化的新型底物。核磁共振(NMR)光谱结合交联实验和竞争结合试验表明,完全无序的分离出的ID3与ZFP106的IDR瞬时相互作用,以维持两个区域的无序状态。这些发现表明,除连接功能外,ID3还可以与CBP的乙酰化底物相互作用。

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