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The scaffold protein WRAP53β orchestrates the ubiquitin response critical for DNA double-strand break repair

机译:支架蛋白WRAP53β协调了对DNA双链断裂修复至关重要的泛素反应

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摘要

The WD40 domain-containing protein WRAP53β (WD40 encoding RNA antisense to p53; also referred to as WDR79/TCAB1) controls trafficking of splicing factors and the telomerase enzyme to Cajal bodies, and its functional loss has been linked to carcinogenesis, premature aging, and neurodegeneration. Here, we identify WRAP53β as an essential regulator of DNA double-strand break (DSB) repair. WRAP53β rapidly localizes to DSBs in an ATM-, H2AX-, and MDC1-dependent manner. We show that WRAP53β targets the E3 ligase RNF8 to DNA lesions by facilitating the interaction between RNF8 and its upstream partner, MDC1, in response to DNA damage. Simultaneous binding of MDC1 and RNF8 to the highly conserved WD40 scaffold domain of WRAP53β facilitates their interaction and accumulation of RNF8 at DSBs. In this manner, WRAP53β controls proper ubiquitylation at DNA damage sites and the downstream assembly of 53BP1, BRCA1, and RAD51. Furthermore, we reveal that knockdown of WRAP53β impairs DSB repair by both homologous recombination (HR) and nonhomologous end-joining (NHEJ), causes accumulation of spontaneous DNA breaks, and delays recovery from radiation-induced cell cycle arrest. Our findings establish WRAP53β as a novel regulator of DSB repair by providing a scaffold for DNA repair factors.
机译:包含WD40域的蛋白质WRAP53β(WD40编码对p53的RNA反义;也称为WDR79 / TCAB1)控制剪接因子和端粒酶向Cajal体的转运,其功能丧失与致癌作用,过早衰老和神经变性。在这里,我们确定WRAP53β是DNA双链断裂(DSB)修复的必要调节剂。 WRAP53β以依赖ATM,H2AX和MDC1的方式快速定位到DSB。我们显示WRAP53β通过促进RNF8及其上游伴侣MDC1之间的相互作用来针对DNA损伤,将E3连接酶RNF8靶向DNA损伤。 MDC1和RNF8与WRAP53β的高度保守的WD40支架结构域的同时结合,促进了它们在DSB上的相互作用和RNF8的积累。以这种方式,WRAP53β控制DNA损伤位点和53BP1,BRCA1和RAD51的下游装配体的适当泛素化。此外,我们发现敲除WRAP53β会损害同源重组(HR)和非同源末端连接(NHEJ)的DSB修复,导致自发DNA断裂的积累,并延迟从辐射诱导的细胞周期停滞中恢复。我们的发现通过为DNA修复因子提供支架,将WRAP53β确立为DSB修复的新型调节剂。

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