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SAGA 复合物的原子结构及其与 TBP 的相互作用。

Atomic structure of the SAGA complex and it's interaction with TBP.

机构信息

Centre National de la Recherche Scientifique, UMR7104, Illkirch, France.

Institut National de la Santé et de la Recherche Médicale, U1258, Illkirch, France.

出版信息

C R Biol. 2021 Feb 4;343(3):247-255. doi: 10.5802/crbiol.31.

Abstract

The transcription of eukaryotic protein genes is controlled by a plethora of proteins which act together in multi-component complexes to facilitate the DNA dependent RNA polymerase II (Pol II) enzyme to bind to the transcription start site and to generate messenger RNA from the gene's coding sequence. The protein that guides the transcription machinery to the exact transcription start site is called TATA-box Binding Protein, or TBP. TBP is part of two large protein complexes involved in Pol II transcription, TFIID and SAGA. The two complexes share several subunits implicated in the interaction with TBP and contain proteins with structural elements highly homologous to nucleosomal histones. Despite the intensive study of transcription initiation, the mode of interaction of TBP with these complexes and its release upon DNA binding was elusive. In this study we demonstrate the quasi-atomic model of SAGA in complex with TBP. The structure reveals the intricate network of interactions that coordinate the different functional domains of SAGA and resolves a deformed octamer of histone-fold domains at the core of SAGA. This deformed octamer is precisely tuned to establish a peripheral site for TBP binding, where it is protected by steric hindrance against the binding of spurious DNA. Complementary biochemical analysis points to a mechanism for TBP delivery and release from SAGA that requires the general transcription factor TFIIA and whose efficiency correlates with the affinity of DNA to TBP.As the TBP binding machinery is highly similar in TFIID and SAGA, we demonstrated a universal mechanism of how TBP is delivered to gene promoters during transcription initiation.

摘要

真核生物蛋白基因的转录受到多种蛋白质的调控,这些蛋白质共同作用于多组分复合物中,以促进 DNA 依赖的 RNA 聚合酶 II(Pol II)酶与转录起始位点结合,并从基因的编码序列生成信使 RNA。指导转录机制到达确切转录起始位点的蛋白质称为 TATA 框结合蛋白(TBP)。TBP 是参与 Pol II 转录的两个大型蛋白质复合物 TFIID 和 SAGA 的一部分。这两个复合物共享几个与 TBP 相互作用的亚基,并包含与核小体组蛋白具有高度同源结构元件的蛋白质。尽管对转录起始进行了深入研究,但 TBP 与这些复合物的相互作用方式及其在 DNA 结合时的释放方式仍不清楚。在这项研究中,我们展示了与 TBP 复合物的 SAGA 的准原子模型。该结构揭示了协调 SAGA 不同功能域的复杂相互作用网络,并解析了 SAGA 核心处的组蛋白折叠结构域的变形八聚体。这个变形的八聚体精确地调整了 TBP 结合的外围位点,在这个位点,它受到空间位阻的保护,防止与非特异性 DNA 结合。互补的生化分析指出了 TBP 从 SAGA 传递和释放的机制,该机制需要一般转录因子 TFIIA,其效率与 DNA 与 TBP 的亲和力相关。由于 TFIID 和 SAGA 中的 TBP 结合机制非常相似,我们展示了在转录起始过程中 TBP 如何被递送到基因启动子的通用机制。

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