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Nucleosome-mediated cooperativity between transcription factors

机译:转录因子之间的核小体介导的协同作用

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Cooperative binding of transcription factors (TFs) to promoters and other regulatory regions is essential for precise gene expression. The classical model of cooperativity requires direct interactions between TFs, thus constraining the arrangement of TF sites in regulatory regions. Recent genomic and functional studies, however, demonstrate a great deal of flexibility in such arrangements with variable distances, numbers of sites, and identities of TF sites located in cis-regulatory regions. Such flexibility is inconsistent with cooperativity by direct interactions between TFs. Here, we demonstrate that strong cooperativity among noninteracting TFs can be achieved by their competition with nucleosomes. We find that the mechanism of nucleosome-mediated cooperativity is analogous to cooperativity in another multimolecular complex: hemoglobin. This surprising analogy provides deep insights, with parallels between the heterotropic regulation of hemoglobin (e.g., the Bohr effect) and the roles of nucleosome-positioning sequences and chromatin modifications in gene expression. Nucleosome-mediated cooperativity is consistent with several experimental studies, is equally applicable to repressors and activators, allows substantial flexibility in and modularity of regulatory regions, and provides a rationale for a broad range of genomic and evolutionary observations. Striking parallels between cooperativity in hemoglobin and in transcrip-tional regulation point to a general mechanism that can be used in various biological systems.
机译:转录因子(TFs)与启动子和其他调控区的合作结合对于精确的基因表达至关重要。经典的合作模型要求TF之间直接相互作用,从而限制了TF区域在调控区域的排列。但是,最近的基因组和功能研究表明,在这种排列方式中,距离,位置数和位于顺式调控区的TF位点的身份不同,具有很大的灵活性。通过TF之间的直接交互,这种灵活性与协作性不一致。在这里,我们证明非相互作用的TF之间强大的合作性可以通过它们与核小体的竞争来实现。我们发现核小体介导的协同作用的机制类似于另一种多分子复合物:血红蛋白中的协同作用。这种令人惊讶的类比提供了深刻的见解,在血红蛋白的异向调节(例如玻尔效应)与核小体定位序列和染色质修饰在基因表达中的作用之间具有相似之处。核小体介导的协同作用与多项实验研究一致,同样适用于阻抑物和激活物,在调节区域具有很大的灵活性和模块化,并为广泛的基因组和进化观察提供了理论依据。血红蛋白和转录调节之间的协同作用之间惊人的相似之处指出了可用于各种生物系统的一般机制。

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