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Generation of nonhydrolyzable ubiquitin-histone mimics

机译:不可水解的泛素-组蛋白模拟物的产生

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Histone proteins undergo various types of post-translational modifications (PTMs) to regulate dynamic processes in the cell, including replication, transcription and DNA damage repair. One type of histone PTM is the attachment of a small protein, ubiquitin Cub). In eukaryotic organisms, a single Ub is attached to specific lysine residues of histones H2A and H2B in a modification that, unlike many other forms of ubiquitination in the cell, does not signal degradation. Instead, both attachment and removal of Ub to these histones has been shown to affect gene transcription, pre-mRNA splicing, and DNA damage repair, but the mechanisms by which histone ubiquitination governs these processes are not well understood. In an effort to identify "readers" of Ub-histones, we developed a straightforward crosslinking strategy to generate nonhydrolyzable Ub-histone mimics. These mimics were assembled into Ub-histone-containing dimers or nucleosomes. We demonstrate that they can be used in pulldown assays to identify proteins that differentiate unmodified and ubiquitinated histones. (C) 2014 Elsevier Inc. All rights reserved.
机译:组蛋白经过各种类型的翻译后修饰(PTM),以调节细胞中的动态过程,包括复制,转录和DNA损伤修复。组蛋白PTM的一种类型是小蛋白泛素Cub的附着。在真核生物中,单个Ub以修饰的方式连接到组蛋白H2A和H2B的特定赖氨酸残基上,这种修饰与细胞中许多其他形式的泛素化不同,不会发出降解信号。取而代之的是,已证明Ub与这些组蛋白的附着和去除均会影响基因转录,mRNA前剪接和DNA损伤修复,但对组蛋白泛素化控制这些过程的机制尚不清楚。为了确定Ub组蛋白的“读者”,我们开发了一种直接的交联策略以生成不可水解的Ub组蛋白模拟物。这些模拟物被组装成含Ub组蛋白的二聚体或核小体。我们证明,它们可用于下拉测定法,以鉴定可区分未修饰和泛素化组蛋白的蛋白质。 (C)2014 Elsevier Inc.保留所有权利。

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