通过化学连接产生位点特异性泛素化组蛋白,探索组蛋白去泛素化酶的特异性

N. Alafaleq, Yun-Seok Choi, B. Atanassov, R. E. Cohen, T. Yao
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摘要

附件的mono-ubiquitin组蛋白的翻译后修饰在调节染色质结构和功能中扮演着重要的角色。像其他表观遗传修饰一样,泛素附着位点在决定其功能结果方面至关重要。根据组蛋白的类型和被修饰的特定赖氨酸残基,泛素化作用于多种途径,包括DNA损伤修复、转录延伸和转录抑制。特定的读取器、写入器和擦除器活动已经进化到通过不同位点的泛素化来区分核小体。为了促进泛素化核小体的生化研究,我们开发了一种有效的策略,在特定位点化学连接完整的泛素和组蛋白,以产生接近天然的泛素-组蛋白偶联物。因为这些化学连接的泛素偶联物是可水解的,它们使我们能够在体外表征几种组蛋白去泛素酶的特异性。为了深入了解这些去泛素酶特异性的机制,我们使用了一种免费的基于Ub传感器的实时分析来确定它们的Michaelis-Menten动力学。我们的结果证实了先前报道的BAP1和USP22的特异性,但也揭示了其他在文献中不太明确的组蛋白去泛素酶的特异性。
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Generation of site-specific ubiquitinated histones through chemical ligation to probe the specificities of histone deubiquitinases
The attachment of mono-ubiquitin to histones as a post-translational modification plays important roles in regulating chromatin structure and function. Like other epigenetic modifications, the site of ubiquitin attachment is critically important in determining its functional outcome. Depending on the type of histone and the specific lysine residue that is modified, ubiquitination acts in diverse pathways including DNA damage repair, transcription elongation, and transcription repression. Specific reader, writer and eraser activities have evolved to distinguish nucleosomes by ubiquitination of different sites. To facilitate biochemical studies of ubiquitinated nucleosomes, we have developed an efficient strategy to chemically ligate intact ubiquitin and histone proteins at specific sites to generate near-native ubiquitin-histone conjugates. Because these chemically-ligated ubiquitin conjugates are hydrolysable, they enabled us to characterize in vitro the specificities of several histone deubiquitinases. To gain insight into the mechanisms that contribute to the specificities of these deubiquitinases, we used a free Ub sensor-based real-time assay to determine their Michaelis-Menten kinetics. Our results confirmed previously reported specificities of BAP1 and USP22, but also revealed specificities of other histone deubiquitinases that have been less well defined in the literature.
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