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生物分子架构师:真核生物RNA聚合酶II C末端结构域提供的一种支架

Bio-molecular architects: a scaffold provided by the C-terminal domain of eukaryotic RNA polymerase II.

作者信息

Zhang Mengmeng, Gill Gordon N, Zhang Yan

机构信息

Department of Chemistry and Biochemistry, University of Texas at Austin, Austin, TX, USA.

出版信息

Nano Rev. 2010;1. doi: 10.3402/nano.v1i0.5502. Epub 2010 Aug 30.

Abstract

In eukaryotic cells, the transcription of genes is accurately orchestrated both spatially and temporally by the C-terminal domain of RNA polymerase II (CTD). The CTD provides a dynamic platform to recruit different regulators of the transcription apparatus. Different posttranslational modifications are precisely applied to specific sites of the CTD to coordinate transcription process. Regulators of the RNA polymerase II must identify specific sites in the CTD for cellular survival, metabolism, and development. Even though the CTD is disordered in the eukaryotic RNA polymerase II crystal structures due to its intrinsic flexibility, recent advances in the complex structural analysis of the CTD with its binding partners provide essential clues for understanding how selectivity is achieved for individual site recognition. The recent discoveries of the interactions between the CTD and histone modification enzymes disclose an important role of the CTD in epigenetic control of the eukaryotic gene expression. The intersection of the CTD code with the histone code discloses an intriguing yet complicated network for eukaryotic transcriptional regulation.

摘要

在真核细胞中,基因转录由RNA聚合酶II(CTD)的C末端结构域在空间和时间上精确协调。CTD提供了一个动态平台,用于招募转录装置的不同调节因子。不同的翻译后修饰精确地应用于CTD的特定位点,以协调整个转录过程。RNA聚合酶II的调节因子必须识别CTD中的特定位点,以确保细胞的存活、代谢和发育。尽管由于其固有的灵活性,CTD在真核RNA聚合酶II晶体结构中是无序的,但最近对CTD与其结合伙伴的复杂结构分析取得的进展为理解如何实现对单个位点识别的选择性提供了重要线索。最近发现CTD与组蛋白修饰酶之间的相互作用,揭示了CTD在真核基因表达表观遗传控制中的重要作用。CTD密码与组蛋白密码的交叉揭示了一个有趣而复杂的真核转录调控网络。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3084/3215212/bdfcf91268c5/NANO-1-5502-g004.jpg

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