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Structural basis for recruitment of CBP/p300 coactivators by STAT1 and STAT2 transactivation domains

机译:STAT1和STAT2反式激活域募集CBP / p300共激活剂的结构基础

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摘要

CBP/p300 transcriptional coactivators mediate gene expression by integrating cellular signals through interactions with multiple transcription factors. To elucidate the molecular and structural basis for CBP-dependent gene expression, we determined structures of the CBP TAZ1 and TAZ2 domains in complex with the transactivation domains (TADs) of signal transducer and activator of transcription 2 (STAT2) and STAT1, respectively. Despite the topological similarity of the TAZ1 and TAZ2 domains, subtle differences in helix packing and surface grooves constitute major determinants of target selectivity. Our results suggest that TAZ1 preferentially binds long TADs capable of contacting multiple surface grooves simultaneously, whereas smaller TADs that are restricted to a single contiguous binding surface form complexes with TAZ2. Complex formation for both STAT TADs involves coupled folding and binding, driven by intermolecular hydrophobic and electrostatic interactions. Phosphorylation of S727, required for maximal transcriptional activity of STAT1, does not enhance binding to any of the CBP domains. Because the different STAT TADs recognize different regions of CBP/p300, there is a potential for multivalent binding by STAT heterodimers that could enhance the recruitment of the coactivators to promoters.
机译:CBP / p300转录共激活因子通过与多种转录因子相互作用整合细胞信号来介导基因表达。为了阐明CBP依赖性基因表达的分子和结构基础,我们确定了CBP TAZ1和TAZ2结构域分别与信号转导子和转录激活子2(STAT2)和STAT1的反式激活域(TADs)复杂的结构。尽管TAZ1和TAZ2域的拓扑相似,但螺旋堆积和表面凹槽的细微差别构成了目标选择性的主要决定因素。我们的结果表明,TAZ1优先结合能够同时接触多个表面凹槽的长TAD,而局限于单个连续结合表面的较小TAD与TAZ2形成复合物。两种STAT TAD的复合物形成都涉及分子间疏水和静电相互作用驱动的折叠和结合。 STAT1的最大转录活性所需的S727的磷酸化作用不会增强与任何CBP域的结合。因为不同的STAT TAD识别CBP / p300的不同区域,所以STAT异二聚体具有多价结合的潜力,这可能会增强共激活子向启动子的募集。

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