首页> 外文期刊>Cell death and differentiation >NRAGE is involved in homologous recombination repair to resist the DNA-damaging chemotherapy and composes a ternary complex with RNF8-BARD1 to promote cell survival in squamous esophageal tumorigenesis
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NRAGE is involved in homologous recombination repair to resist the DNA-damaging chemotherapy and composes a ternary complex with RNF8-BARD1 to promote cell survival in squamous esophageal tumorigenesis

机译:NRAGE参与同源重组修复以抵抗破坏DNA的化学疗法,并与RNF8-BARD1组成三元复合物以促进鳞状食管肿瘤发生中的细胞存活

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摘要

NRAGE, a neurotrophin receptor-interacting melanoma antigen-encoding gene homolog, is significantly increased in the nucleus of radioresistant esophageal tumor cell lines and is highly upregulated to promote cell proliferation in esophageal carcinomas (ECs). However, whether the overexpressed NRAGE promotes cell growth by participating in DNA-damage response (DDR) is still unclear. Here we show that NRAGE is required for efficient double-strand breaks (DSBs) repair via homologous recombination repair (HRR) and downregulation of NRAGE greatly sensitizes EC cells to DNA-damaging agents both in vitro and in vivo. Moreover, NRAGE not only regulates the stability of DDR factors, RNF8 and BARD1, in a ubiquitin-proteolytic pathway, but also chaperons the interaction between BARD1 and RNF8 via their RING domains to form a novel ternary complex. Additionally, the expression of NRAGE is closely correlated with RNF8 and BARD1 in esophageal tumor tissues. In summary, our findings reveal a novel function of NRAGE that will help to guide personalized esophageal cancer treatments by targeting NRAGE to increase cell sensitivity to DNA-damaging therapeutics in the long run.
机译:NRAGE是一种与神经营养素受体相互作用的黑色素瘤抗原编码基因同源物,在耐放射性食管肿瘤细胞系的细胞核中显着增加,并被上调以促进食管癌(ECs)中的细胞增殖。但是,尚不清楚过表达的NRAGE是否通过参与DNA损伤反应(DDR)来促进细胞生长。在这里,我们表明NRAGE是通过同源重组修复(HRR)进行有效双链断裂(DSBs)修复所必需的,NRAGE的下调极大地使EC细胞在体外和体内对DNA损伤剂敏感。此外,NRAGE不仅在遍在蛋白水解途径中调节DDR因子RNF8和BARD1的稳定性,而且还通过其RING域来控制BARD1和RNF8之间的相互作用以形成新的三元复合物。另外,在食管肿瘤组织中,NRAGE的表达与RNF8和BARD1密切相关。总之,我们的发现揭示了NRAGE的新功能,它将通过靶向NRAGE从长远来看提高细胞对DNA损伤治疗剂的敏感性,从而有助于指导个性化食道癌治疗。

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