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Cooperative DNA Recognition Modulated by an Interplay between Protein-Protein Interactions and DNA-Mediated Allostery

机译:蛋白质-蛋白质相互作用与DNA介导的变构之间的相互作用所调节的合作DNA识别。

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Highly specific transcriptional regulation depends on the cooperative association of transcription factors into enhanceosomes. Usually, their DNA-binding cooperativity originates from either direct interactions or DNA-mediated allostery. Here, we performed unbiased molecular simulations followed by simulations of protein-DNA unbinding and free energy profiling to study the cooperative DNA recognition by OCT4 and SOX2, key components of enhanceosomes in pluripotent cells. We found that SOX2 influences the orientation and dynamics of the DNA-bound configuration of OCT4. In addition SOX2 modifies the unbinding free energy profiles of both DNA-binding domains of OCT4, the POU specific and POU homeodomain, despite interacting directly only with the first. Thus, we demonstrate that the OCT4-SOX2 cooperativity is modulated by an interplay between protein-protein interactions and DNA-mediated allostery. Further, we estimated the change in OCT4-DNA binding free energy due to the cooperativity with SOX2, observed a good agreement with experimental measurements, and found that SOX2 affects the relative DNA-binding strength of the two OCT4 domains. Based on these findings, we propose that available interaction partners in different biological contexts modulate the DNA exploration routes of multi-domain transcription factors such as OCT4. We consider the OCT4-SOX2 cooperativity as a paradigm of how specificity of transcriptional regulation is achieved through concerted modulation of protein-DNA recognition by different types of interactions.
机译:高度特异性的转录调控取决于转录因子与增强体的协同结合。通常,它们的DNA结合协同作用源自直接相互作用或DNA介导的变构。在这里,我们进行了无偏分子模拟,然后进行了蛋白质-DNA脱附和自由能谱模拟,以研究OCT4和SOX2(多能细胞中增强体的关键成分)对DNA的协同识别。我们发现SOX2影响OCT4的DNA绑定配置的方向和动态。另外,尽管仅与第一个相互作用,SOX2修饰了OCT4的两个DNA结合结构域,POU特异性结构域和POU同源结构域的非结合自由能谱。因此,我们证明了OCT4-SOX2的协同作用是由蛋白质-蛋白质相互作用与DNA介导的变构作用之间的相互作用所调节的。此外,我们估计了由于与SOX2的协同作用,OCT4-DNA结合自由能的变化,观察到与实验测量结果吻合良好,并且发现SOX2影响了两个OCT4域的相对DNA结合强度。基于这些发现,我们建议在不同的生物学环境中可用的相互作用伙伴调节诸如OCT4的多域转录因子的DNA探索途径。我们认为OCT4-SOX2的协同作用是通过不同类型的相互作用通过协同调节蛋白质-DNA识别来实现转录调控特异性的范例。

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