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首页> 外文期刊>Biochemical and Biophysical Research Communications >The dynamics of histone H2A ubiquitination in HeLa cells exposed to rapamycin, ethanol, hydroxyurea, ER stress, heat shock and DNA damage
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The dynamics of histone H2A ubiquitination in HeLa cells exposed to rapamycin, ethanol, hydroxyurea, ER stress, heat shock and DNA damage

机译:暴露于雷帕霉素,乙醇,羟基脲,内质网应激,热休克和DNA损伤的HeLa细胞中组蛋白H2A泛素化的动力学

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Polyubiquitination plays key roles in proteasome-dependent and independent cellular events, whereas monoubiquitination is involved in gene expression, DNA repair, protein protein interaction, and protein trafficking. We previously developed an FK2 antibody, which specifically recognizes poly-Ub moieties but not free Ub. To elucidate the role of Ub conjugation in response to cellular stress, we used FK2 to investigate whether chemical stress (rapamycin, ethanol, or hydroxyurea), ER stress (thapsigargin or tunicamycin), heat shock or DNA damage (H2O2 or methyl methanesulfonate) affect the formation of Ub conjugates including histone H2A (hH2A) ubiquitination. First, we found that all forms of stress tested increased poly-ubiquitinated proteins in HeLa cells. Furthermore, rapamycin and hydroxyurea treatment, and ER stress increased ubiquitination of hH2A, while methyl methanesulfonate (MMS) treatment induced deubiquitination of hH2A. The ethanol and H2O2 treatments, and heat shock transiently induced hH2A de-ubiquitination, although deubiquitinated hH2A were ubiquitinated again by subsequent cultivation. We also revealed that FK2 reacts with not only polyubiquitinated proteins but also monoubiquitinated hH2A. With the exception of MMS, all forms of stress tested increased the acetylation of K5-hH2A, K9-hH3 and K8-hH4 in addition to ubiquitination. K118 and 1(119 of hH2A were ubiquitinated in cells under normal conditions, and 1(119 was the major ubiquitination site. The MMS-treatment and heat shock induced the deubiquitination of both K118 and K119-histone H2A. Interestingly, MMS treatment did not affect cell HeLa cell viability expressing double-mutant hH2A (KK118,119AA-hH2A), while heat shock slightly but significantly decreased viability of double-mutant hH2A expressing cells, indicating that ubiquitination of both sites associates with recovery from heat shock but not MMS treatment. Thus, we characterized FK2 reactivity and demonstrated that various stresses alter the ubiquitination status, particularly ubiquitinated hH2A and with histone acetylation, and highlight the physiological importance of hH2A ubiquitination after exposure to stress stimuli. (C) 2016 Elsevier Inc. All rights reserved.
机译:多泛素化在蛋白酶体依赖性和独立的细胞事件中起关键作用,而单泛素化涉及基因表达,DNA修复,蛋白质相互作用和蛋白质运输。我们之前开发了FK2抗体,该抗体可特异性识别多Ub部分,但不能识别游离Ub。为了阐明Ub偶联在细胞应激反应中的作用,我们使用FK2研究化学应激(雷帕霉素,乙醇或羟基脲),ER应激(毒胡萝卜素或衣霉素),热休克或DNA损伤(H2O2或甲磺酸甲酯)是否受到影响Ub结合物的形成,包括组蛋白H2A(hH2A)泛素化。首先,我们发现测试的所有形式的压力均会增加HeLa细胞中的多泛素化蛋白。此外,雷帕霉素和羟基脲处理以及内质网应激增加了hH2A的泛素化,而甲磺酸甲酯(MMS)处理则诱导了hH2A的泛素化。乙醇和H2O2处理以及热休克会短暂诱导hH2A去泛素化,尽管去泛素化的hH2A在随后的培养中又被泛素化了。我们还揭示了FK2不仅与泛素化的蛋白发生反应,而且与单泛素化的hH2A发生反应。除MMS外,所有测试的应激形式均会增加泛素化作用,从而增加K5-hH2A,K9-hH3和K8-hH4的乙酰化程度。在正常条件下,细胞中K118和1(119)的hH2A被泛素化,而1(119是主要的泛素化位点。MMS处理和热激诱导K118和K119-组蛋白H2A均被泛素化。有趣的是,MMS处理没有会影响表达双突变hH2A(KK118,119AA-hH2A)的细胞HeLa细胞活力,而热休克略微但显着降低了表达双突变hH2A的细胞的活力,这表明两个位点的泛素化与热休克的恢复相关,但与MMS处理无关因此,我们表征了FK2反应性,并证明了各种应力会改变泛素化状态,尤其是泛素化的hH2A并具有组蛋白乙酰化作用,并强调暴露于应激刺激后hH2A泛素化的生理重要性(C)2016 Elsevier Inc.保留所有权利。

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