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用纯化因子进行核小体 H2B 的泛素化。

Nucleosomal H2B ubiquitylation with purified factors.

机构信息

Laboratory of Biochemistry and Molecular Biology, The Rockefeller University, 1230 York Avenue, New York, NY 10065, USA.

出版信息

Methods. 2011 Jul;54(3):331-8. doi: 10.1016/j.ymeth.2011.03.009. Epub 2011 Apr 3.

Abstract

Diverse histone modifications play important roles in transcriptional regulation throughout eukaryotes, and recent studies have implicated histone H2B ubiquitylation in active transcription. The necessity of at least three enzymes (E1-E3), as well as ongoing transcription events, for efficient H2B ubiquitylation complicates mechanistic studies of H2B ubiquitylation relative to other histone modifications. Here we describe experimental protocols for preparation of human H2B ubiquitylation factors, ubiquitylation substrates and transcription factors, as well as the use of these factors to establish H2B ubiquitylation mechanisms during transcription. The methods include reliable protein interaction and E3 ubiquitylation assays that can be widely applied to confirm cognate E2-E3 pairs in other protein ubiquitylation systems, optimized in vitro ubiquitylation assays for various histone substrates, and a transcription-coupled H2B ubiquitylation assay in a highly purified transcription system. These comprehensive analyses have revealed (i) that RAD6 serves as the cognate E2 for the BRE1 complex in human cells, as previously established in yeast, (ii) that RAD6, through direct interaction with the BRE1 complex, ubiquitylates chromatinized H2B at lysine 120 and (iii) that PAF1 complex-mediated transcription is required for efficient H2B ubiquitylation. This experimental system permits detailed mechanistic analyses of H2B ubiquitylation during transcription by providing information concerning both precise enzyme functions and physical interactions between the transcription and histone modification machineries.

摘要

组蛋白修饰在真核生物的转录调控中起着重要作用,最近的研究表明组蛋白 H2B 泛素化在转录活性中起作用。至少需要三种酶(E1-E3)以及正在进行的转录事件才能有效地进行 H2B 泛素化,这使得 H2B 泛素化的机制研究相对于其他组蛋白修饰变得复杂。本文描述了人源 H2B 泛素化因子、泛素化底物和转录因子的制备实验方案,以及利用这些因子在转录过程中建立 H2B 泛素化机制的方法。这些方法包括可靠的蛋白相互作用和 E3 泛素化测定,可广泛应用于确认其他蛋白泛素化系统中的同源 E2-E3 对,优化各种组蛋白底物的体外泛素化测定,以及在高度纯化的转录系统中进行转录偶联的 H2B 泛素化测定。这些综合分析揭示了:(i)RAD6 作为酵母中已建立的 BRE1 复合物的同源 E2,(ii)RAD6 通过与 BRE1 复合物的直接相互作用,泛素化组蛋白 H2B 赖氨酸 120,以及(iii)PAF1 复合物介导的转录对于有效的 H2B 泛素化是必需的。该实验系统通过提供关于转录和组蛋白修饰机器之间的精确酶功能和物理相互作用的信息,允许对转录过程中的 H2B 泛素化进行详细的机制分析。

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