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核心启动子上起始前复合物组装的结构见解。

Structural insights into preinitiation complex assembly on core promoters.

机构信息

Fudan University Shanghai Cancer Center, Institutes of Biomedical Sciences, State Key Laboratory of Genetic Engineering and Shanghai Key Laboratory of Medical Epigenetics, Shanghai Medical College of Fudan University, Shanghai 200032, China.

The International Co-laboratory of Medical Epigenetics and Metabolism, Ministry of Science and Technology, China, Department of Systems Biology for Medicine, School of Basic Medical Sciences, Shanghai Medical College of Fudan University, Shanghai 200032, China.

出版信息

Science. 2021 Apr 30;372(6541). doi: 10.1126/science.aba8490. Epub 2021 Apr 1.

Abstract

Transcription factor IID (TFIID) recognizes core promoters and supports preinitiation complex (PIC) assembly for RNA polymerase II (Pol II)-mediated eukaryotic transcription. We determined the structures of human TFIID-based PIC in three stepwise assembly states and revealed two-track PIC assembly: stepwise promoter deposition to Pol II and extensive modular reorganization on track I (on TATA-TFIID-binding element promoters) versus direct promoter deposition on track II (on TATA-only and TATA-less promoters). The two tracks converge at an ~50-subunit holo PIC in identical conformation, whereby TFIID stabilizes PIC organization and supports loading of cyclin-dependent kinase (CDK)-activating kinase (CAK) onto Pol II and CAK-mediated phosphorylation of the Pol II carboxyl-terminal domain. Unexpectedly, TBP of TFIID similarly bends TATA box and TATA-less promoters in PIC. Our study provides structural visualization of stepwise PIC assembly on highly diversified promoters.

摘要

转录因子IID(TFIID)识别核心启动子,并支持 RNA 聚合酶 II(Pol II)介导的真核转录的起始复合物(PIC)组装。我们确定了三种逐步组装状态下基于人 TFIID 的 PIC 的结构,并揭示了双轨 PIC 组装:逐步将启动子沉积到 Pol II 上,以及在轨道 I(在 TATA-TFIID 结合元件启动子上)上进行广泛的模块化重组,与直接在轨道 II(在仅 TATA 和无 TATA 启动子上)上进行启动子沉积。两条轨道在相同构象的约 50 个亚基全 holo PIC 处汇聚,其中 TFIID 稳定 PIC 结构,并支持细胞周期蛋白依赖性激酶(CDK)激活激酶(CAK)加载到 Pol II 上,以及 CAK 介导的 Pol II 羧基末端结构域磷酸化。出乎意料的是,TFIID 的 TBP 也在 PIC 中弯曲 TATA 盒和无 TATA 启动子。我们的研究提供了高度多样化启动子上逐步 PIC 组装的结构可视化。

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