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氧化应激后的染色质修复:PARP 介导的蛋白酶体激活的作用。

Chromatin repair after oxidative stress: role of PARP-mediated proteasome activation.

机构信息

Institute of Biological Chemistry and Nutrition, University Hohenheim, 70593 Stuttgart, Germany.

出版信息

Free Radic Biol Med. 2010 Mar 1;48(5):673-80. doi: 10.1016/j.freeradbiomed.2009.12.010. Epub 2009 Dec 16.

Abstract

Oxidative stress is an inevitable process in the nucleus, especially in antitumor chemotherapy, and adaptation by defense mechanisms seems to be one element in the development of long-term resistance to many chemotherapeutic drugs. In this study, a potential chromatin repair mechanism during oxidative stress was investigated in HT22 cells. The 20S proteasome has been shown to be largely responsible for the degradation of oxidatively modified histone proteins in the nucleus. Poly(ADP-ribosyl)ation reactions also play an important role in DNA repair as a consequence of oxidative damage and single-strand breaks. Such a reaction may occur also with the 20S proteasome--with a known increase in enzymatic activity--and also with histones--reducing their proteolytic susceptibility as shown for the first time here. After hydrogen peroxide treatment of HT22 cells, degradation of the model peptide substrate suc-LLVY-MCA and degradation of oxidized histones by nuclear proteasome increased. During the removal of protein carbonyls, single-strand breaks and 8-hydroxy-2'-deoxyguanosine, proteasome, and poly(ADP-ribose) polymerase-1 enzymes were shown to play tightly interacting roles. Our results following the repair of oxidative damage show the proteolytic activation of proteasome concerning poly(ADP-ribosyl)ation together with a decline in poly(ADP-ribosyl)ation of oxidized histones, leading to a selective recognition of oxidatively modified histones.

摘要

氧化应激是细胞核中不可避免的过程,特别是在抗肿瘤化疗中,防御机制的适应似乎是许多化疗药物产生长期耐药性的一个因素。在这项研究中,研究了 HT22 细胞在氧化应激过程中潜在的染色质修复机制。20S 蛋白酶体已被证明在很大程度上负责降解细胞核中氧化修饰的组蛋白蛋白。聚(ADP-核糖)反应也在氧化损伤和单链断裂导致的 DNA 修复中发挥重要作用。这种反应也可能发生在 20S 蛋白酶体上——酶活性明显增加——也可能发生在组蛋白上——如这里首次显示的那样,降低其蛋白水解易感性。在 HT22 细胞用过氧化氢处理后,模型肽底物 suc-LLVY-MCA 的降解和核蛋白酶体氧化组蛋白的降解增加。在去除蛋白质羰基、单链断裂和 8-羟基-2'-脱氧鸟苷的过程中,蛋白酶体和聚(ADP-核糖)聚合酶-1 酶被证明发挥着紧密相互作用的作用。我们对氧化损伤修复的结果表明,蛋白酶体的蛋白水解激活与氧化组蛋白的聚(ADP-核糖)化下降有关,导致对氧化修饰组蛋白的选择性识别。

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