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Class switching and meiotic defects in mice lacking the E3 ubiquitin ligase RNF8

机译:Class switching and meiotic defects in mice lacking the E3 ubiquitin ligase RNF8

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摘要

53BP1 is a well-known mediator of the cellular response to DNA damage. Two alternative mechanisms have been proposed to explain 53BP1's interaction with DNA double-strand breaks (DSBs), one by binding to methylated histones and the other via an RNF8 E3 ligase-dependent ubiquitylation pathway. The formation of RNF8 and 53BP1 irradiationinduced foci are both dependent on histone H2AX. To evaluate the contribution of the RNF8-dependent pathway to 53BP1 function, we generated RNF8 knockout mice. We report that RNF8 deficiency results in defective class switch recombination (CSR) and accumulation of unresolved immunoglobulin heavy chain-associated DSBs. The CSR DSB repair defect is milder than that observed in the absence of 53BP1 but similar to that found in H2AX-/- mice. Moreover, similar to H2AX but different from 53BP1 deficiency, RNF8-/- males are sterile, and this is associated with defective ubiquitylation of the XY chromatin. Combined loss of H2AX and RNF8 does not cause further impairment in CSR, demonstrating that the two genes function epistatically. Importantly, although 53BP1 foci formation is RNF8 dependent, its binding to chromatin is preserved in the absence of RNF8. This suggests a two-step mechanism for 53BP1 association with chromatin in which constitutive loading is dependent on interactions with methylated histones, whereas DNA damage-inducible RNF8-dependent ubiquitylation allows its accumulation at damaged chromatin.
机译:53BP1是细胞对DNA损伤反应的众所周知的介体。已经提出了两种可供选择的机制来解释53BP1与DNA双链断裂(DSB)的相互作用,一种通过与甲基化组蛋白结合,另一种通过RNF8 E3连接酶依赖性泛素化途径进行。 RNF8和53BP1辐射诱发灶的形成均取决于组蛋白H2AX。若要评估RNF8依赖途径对53BP1功能的贡献,我们生成了RNF8基因敲除小鼠。我们报告RNF8缺乏导致缺陷类开关重组(CSR)和未解决的免疫球蛋白重链相关DSBs积累。 CSR DSB修复缺陷比没有53BP1时观察到的缺陷轻,但与H2AX-/-小鼠相似。而且,类似于H2AX,但不同于53BP1缺乏,RNF8-/-雄性不育,这与XY染色质的泛素化缺陷有关。 H2AX和RNF8的共同丧失不会导致CSR进一步受损,表明这两个基因在上位性发挥作用。重要的是,尽管53BP1灶的形成依赖于RNF8,但在不存在RNF8的情况下仍保留了其与染色质的结合。这表明53BP1与染色质缔合的两步机制,其中组成性负载取决于与甲基化组蛋白的相互作用,而DNA损伤诱导的RNF8依赖性泛素化使其在受损的染色质上积累。

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