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Electrostatic hot spot on DNA-binding domains mediates phosphate desolvation and the pre-organization of specificity determinant side chains

机译:DNA结合域上的静电热点介导磷酸去溶剂化和特异性决定子侧链的预组织

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摘要

A major obstacle towards elucidating the molecular basis of transcriptional regulation is the lack of a detailed understanding of the interplay between non-specific and specific protein–DNA interactions. Based on molecular dynamics simulations of C2H2 zinc fingers (ZFs) and engrailed homeodomain transcription factors (TFs), we show that each of the studied DNA-binding domains has a set of highly constrained side chains in preset configurations ready to form hydrogen bonds with the DNA backbone. Interestingly, those domains that bury their recognition helix into the major groove are found to have an electrostatic hot spot for Cl ions located on the same binding cavity as the most buried DNA phosphate. The spot is characterized by three protein hydrogen bond donors, often including two basic side chains. If bound, Cl ions, likely mimicking phosphates, steer side chains that end up forming specific contacts with bases into bound-like conformations. These findings are consistent with a multi-step DNA-binding mechanism in which a pre-organized set of TF side chains assist in the desolvation of phosphates into well defined sites, prompting the re-organization of specificity determining side chains into conformations suitable for the recognition of their cognate sequence.
机译:阐明转录调控的分子基础的主要障碍是缺乏对非特异性和特异性蛋白质-DNA相互作用之间相互作用的详细了解。基于C2H2锌指(ZFs)和参与的同源结构域转录因子(TFs)的分子动力学模拟,我们显示每个研究的DNA结合结构域均具有一组高度受约束的侧链,这些侧链的预设构型易于与氢键形成氢键。 DNA主链。有趣的是,发现那些将识别螺旋掩埋在主要凹槽中的结构域在与最埋藏的DNA磷酸相同的结合腔中具有Cl -离子的静电热点。该斑点的特征在于三个蛋白质氢键供体,通常包括两个基本侧链。如果结合,则可能模仿磷酸盐的Cl -离子操纵侧链,这些侧链最终与碱基形成特定的接触,形成结合状构象。这些发现与多步DNA结合机制一致,在这种机制中,预先组织的TF侧链集有助于将磷酸去溶剂化成定义明确的位点,从而促使特异性的重组重新确定侧链为适合于识别其同源序列。

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