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首页> 外文期刊>Nucleic Acids Research >Depletion of the RNA binding protein HNRNPD impairs homologous recombination by inhibiting DNA-end resection and inducing R-loop accumulation
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Depletion of the RNA binding protein HNRNPD impairs homologous recombination by inhibiting DNA-end resection and inducing R-loop accumulation

机译:RNA结合蛋白HNRNPD的耗竭通过抑制DNA末端切除和诱导R环积累来损害同源重组

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DNA double strand break (DSB) repair through homologous recombination (HR) is crucial to maintain genome stability. DSB resection generates a single strand DNA intermediate, which is crucial for the HR process. We used a synthetic DNA structure, mimicking a resection intermediate, as a bait to identify proteins involved in this process. Among these, LC/MS analysis identified the RNA binding protein, HNRNPD. We found that HNRNPD binds chromatin, although this binding occurred independently of DNA damage. However, upon damage, HNRNPD re-localized to gamma H2Ax foci and its silencing impaired CHK1 S345 phosphorylation and the DNA end resection process. Indeed, HNRNPD silencing reduced: the ssDNA fraction upon camptothecin treatment; AsiSI-induced DSB resection; and RPA32 S4/8 phosphorylation. CRISPR/Cas9-mediated HNRNPD knockout impaired in vitro DNA resection and sensitized cells to camptothecin and olaparib treatment. We found that HNRNPD interacts with the heterogeneous nuclear ribonucleoprotein SAF-A previously associated with DNA damage repair. HNRNPD depletion resulted in an increased amount of RNA:DNA hybrids upon DNA damage. Both the expression of RNase H1 and RNA pol II inhibition recovered the ability to phosphorylate RPA32 S4/8 in HNRNPD knockout cells upon DNA damage, suggesting that RNA:DNA hybrid resolution likely rescues the defective DNA damage response of HNRNPD-depleted cells.
机译:通过同源重组(HR)进行DNA双链断裂(DSB)修复至关重要,以维持基因组稳定性。 DSB切除产生单链DNA中间体,这对于HR工艺至关重要。我们使用了合成的DNA结构,模拟切除中间体,作为诱饵以鉴定参与该过程的蛋白质。其中,LC / MS分析鉴定了RNA结合蛋白HNRNPD。我们发现HNRNPD结合染色质,尽管这种结合是独立于DNA损伤发生的。然而,在损伤时,HNRNPD重新定位为γH2AX焦点及其沉默受损的CHK1 S345磷酸化和DNA结束切除过程。实际上,HNRNPD沉默减少:CAMPTOTHECIN治疗时的SSDNA分数; asisi诱导的dsb切除;和RPA32 S4 / 8磷酸化。 CRISPR / CAS9介导的HNRNPD敲除在体外DNA切除和敏化细胞中损害,以对Champtothecin和Olaparib治疗。我们发现HNRNPD与先前与DNA损伤修复相关的异质核核糖核蛋白SAF-A相互作用。 HNRNPD耗尽导致RNA增加量增加:DNA杂交物在DNA损伤时。 RNaseH1和RNA POL II抑制的表达均在DNA损伤时回收了在HNRNPD敲除细胞中磷酸化RPA32 S4 / 8的能力,表明RNA:DNA杂化拆分可能抵抗HNRNPD耗尽细胞的缺陷DNA损伤响应。

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