首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Ring finger protein 126 (RNF126) suppresses ionizing radiation–induced p53-binding protein 1 (53BP1) focus formation
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Ring finger protein 126 (RNF126) suppresses ionizing radiation–induced p53-binding protein 1 (53BP1) focus formation

机译:无名指蛋白126(RNF126)抑制电离辐射诱导的p53结合蛋白1(53BP1)焦点形成

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摘要

Cells have evolved sophisticated mechanisms to maintain genomic integrity in response to DNA damage. Ionizing radiation (IR)–induced DNA damage results in the formation of IR-induced foci (iRIF) in the nucleus. The iRIF formation is part of the DNA damage response (DDR), which is an essential signaling cascade that must be strictly regulated because either the loss of or an augmented DDR leads to loss of genome integrity. Accordingly, negative regulation of the DDR is as critical as its activation. In this study, we have identified ring finger protein 126 (RNF126) as a negative regulator of the DDR from a screen of iRIF containing 53BP1. RNF126 overexpression abolishes not only the formation of 53BP1 iRIF but also of RNF168, FK2, RAP80, and BRCA1. However, the iRIF formation of γH2AX, MDC1, and RNF8 is maintained, indicating that RNF126 acts between RNF8 and RNF168 during the DDR. In addition, RNF126 overexpression consistently results in the loss of RNF168-mediated H2A monoubiquitination at lysine 13/15 and inhibition of the non-homologous end joining capability. Taken together, our findings reveal that RNF126 is a novel factor involved in the negative regulation of DDR, which is important for sustaining genomic integrity.
机译:细胞已经进化出复杂的机制来维持对DNA损伤的基因组完整性。电离辐射(IR)诱导的DNA损伤导致细胞核中IR诱导灶(iRIF)的形成。 iRIF的形成是DNA损伤反应(DDR)的一部分,DNA损伤反应是必不可少的重要信号传导级联,因为DDR的丢失或增强都会导致基因组完整性的丢失。因此,DDR的负调节与激活一样重要。在这项研究中,我们从包含53BP1的iRIF筛选中鉴定了无名指蛋白126(RNF126)作为DDR的负调节剂。 RNF126的过表达不仅消除了53BP1 iRIF的形成,而且消除了RNF168,FK2,RAP80和BRCA1的形成。但是,可以保持γH2AX,MDC1和RNF8的iRIF形成,这表明DDR在DDR期间RNF126在RNF8和RNF168之间起作用。此外,RNF126的过表达始终导致赖氨酸13/15处RNF168介导的H2A单泛素化的丧失和非同源末端连接能力的抑制。综上所述,我们的发现揭示了RNF126是DDR负调控中涉及的一个新因素,这对维持基因组完整性非常重要。

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