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Splicing controls the ubiquitin response during DNA double-strand break repair

机译:剪接控制DNA双链断裂修复过程中的泛素反应

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Although evidence that splicing regulates DNA repair is accumulating, the underlying mechanism(s) remain unclear. Here, we report that short-term inhibition of pre-mRNA splicing by spliceosomal inhibitors impairs cellular repair of DNA double-strand breaks. Indeed, interference with splicing as little as 1 h prior to irradiation reduced ubiquitylation of damaged chromatin and impaired recruitment of the repair factors WRAP53 beta, RNF168, 53BP1, BRCA1 and RAD51 to sites of DNA damage. Consequently, splicing-deficient cells exhibited significant numbers of residual gamma H2AX foci, as would be expected if DNA repair is defective. Furthermore, we show that this is due to downregulation of the E3 ubiquitin ligase RNF8 and that re-introduction of this protein into splicing-deficient cells restores ubiquitylation at sites of DNA damage, accumulation of downstream factors and subsequent repair. Moreover, downregulation of RNF8 explains the defective repair associated with knockdown of various splicing factors in recent genome-wide siRNA screens and, significantly, overexpression of RNF8 counteracts this defect. These discoveries reveal a mechanism that may not only explain how splicing regulates repair of double-strand breaks, but also may underlie various diseases caused by deregulation of splicing factors, including cancer.
机译:尽管有证据表明剪接调控DNA修复,但其潜在机制仍不清楚。在这里,我们报道剪接体抑制剂对前mRNA剪接的短期抑制会损害DNA双链断裂的细胞修复。实际上,在照射前仅1 h进行剪接即可减少受损染色质的泛素化,并削弱修复因子WRAP53 beta,RNF168、53BP1,BRCA1和RAD51向DNA损伤部位的募集。因此,剪接缺陷的细胞表现出大量的残留伽马H2AX病灶,这是DNA修复缺陷时所期望的。此外,我们表明这是由于E3泛素连接酶RNF8的下调所致,并且将该蛋白重新引入剪接缺陷细胞中可恢复DNA损伤部位的泛素化,下游因子的积累和随后的修复。此外,RNF8的下调解释了在最近的全基因组siRNA筛选中与各种剪接因子的敲低相关的缺陷修复,并且显着地,RNF8的过表达抵消了这一缺陷。这些发现揭示了一种机制,该机制不仅可以解释剪接如何调节双链断裂的修复,而且可以作为由剪接因子的失控导致的各种疾病的基础,包括癌症。

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