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首页> 外文期刊>Oncogene >CRL4A DTL degrades DNA-PKcs to modulate NHEJ repair and induce genomic instability and subsequent malignant transformation
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CRL4A DTL degrades DNA-PKcs to modulate NHEJ repair and induce genomic instability and subsequent malignant transformation

机译:CRL4A DTL将DNA-PKC降解以调节NHEJ修复并诱导基因组不稳定性和随后的恶性转化

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摘要

Genomic instability induced by DNA damage and improper DNA damage repair is one of the main causes of malignant transformation and tumorigenesis. DNA double strand breaks (DSBs) are the most detrimental form of DNA damage, and nonhomologous end-joining (NHEJ) mechanisms play dominant and priority roles in initiating DSB repair. A well-studied oncogene, the ubiquitin ligase Cullin 4A (CUL4A), is reported to be recruited to DSB sites in genomic DNA, but whether it regulates NHEJ mechanisms of DSB repair is unclear. Here, we discovered that the CUL4A-DTL ligase complex targeted the DNA-PKcs protein in the NHEJ repair pathway for nuclear degradation. Overexpression of either CUL4A or DTL reduced NHEJ repair efficiency and subsequently increased the accumulation of DSBs. Moreover, we demonstrated that overexpression of either CUL4A or DTL in normal cells led to genomic instability and malignant proliferation. Consistent with the in vitro findings, in human precancerous lesions, CUL4A expression gradually increased with increasing malignant tendency and was negatively correlated with DNA-PKcs and positively correlated with -H2AX expression. Collectively, this study provided strong evidence that the CUL4A-DTL axis increases genomic instability and enhances the subsequent malignant transformation of normal cells by inhibiting NHEJ repair. These results also suggested that CUL4A may be a prognostic marker of precancerous lesions and a potential therapeutic target in cancer.
机译:DNA损伤和不当DNA损伤修复诱导的基因组不稳定性是恶性转化和肿瘤发生的主要原因之一。 DNA双链断裂(DSB)是最不利的DNA损伤形式,而非致力学终端连接(NHEJ)机制在启动DSB修复时发挥显着和优先作用。据报道,遍布泛素连接酶Cullin 4a(Cul4a)的核心冠状阴性蛋白酶4a(Cul4a),以募集到基因组DNA中的DSB位点,但它是否调节DSB修复的NHEJ机制尚不清楚。在这里,我们发现Cul4A-DTL连接酶复合物在NHEJ修复途径中靶向DNA-PKCS蛋白,用于核降解。 CUL4A或DTL的过表达降低了NHEJ修复效率,随后增加了DSB的积累。此外,我们证明了正常细胞中CUL4A或DTL的过度表达导致基因组不稳定性和恶性增殖。与体外发现,在人癌前病变中,CUL4A表达随着恶性倾向的增加而逐渐增加,与DNA-PKCs呈负相关,与-H2AX表达呈正相关。集体,本研究提供了强大的证据表明CUL4A-DTL轴增加了基因组不稳定性,并通过抑制NHEJ修复来增强正常细胞的后续恶性转化。这些结果还表明CUL4A可以是癌前病变的预后标志物和癌症中的潜在治疗靶标。

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