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Regulatory interplay between TFIID s conformational transitions and its modular interaction with core promoter DNA

机译:TFIID的构象转变及其与核心启动子DNA的模块相互作用之间的调控相互作用

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Recent structural and biochemical studies of human TFIID have significantly increased our understanding of the mechanisms underlying the recruitment of TFIID to promoter DNA and its role in transcription initiation. Structural studies using cryo-EM revealed that modular interactions underlie TFIID's ability to bind simultaneously multiple promoter motifs and to define a DNA state that will facilitate transcription initiation. Here we propose a general model of promoter binding by TFIID, where co-activators, activators, and histone modifications promote and/or stabilize a conformational state of TFIID that results in core promoter engagement. Within this high affinity conformation, we propose that TFIID's extensive interaction with promoter DNA leadsto topological changes in the DNA that facilitate the eventual loading of RNAP II. While more work is required to dissect the individual contributions of activators and repressors to TFIID's DNA binding, the recent cryo-EM studies provide a physical framework to guide future structural, biophysical, and biochemical experiments.
机译:人类TFIID的最新结构和生化研究极大地增进了我们对TFIID募集到启动子DNA的机制及其在转录起始中的作用的了解。使用cryo-EM的结构研究表明,模块化相互作用是TFIID同时结合多个启动子基序和定义有助于转录起始的DNA状态的能力的基础。在这里,我们提出了通过TFIID结合启动子的通用模型,其中共激活剂,激活剂和组蛋白修饰促进和/或稳定了导致核心启动子参与的TFIID的构象状态。在这种高亲和力构象内,我们建议TFIID与启动子DNA的广泛相互作用导致DNA的拓扑变化,从而有助于最终装载RNAP II。尽管需要更多的工作来剖析活化剂和阻遏物对TFIID DNA结合的单独贡献,但最近的冷冻EM研究提供了指导未来结构,生物物理和生化实验的物理框架。

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