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Absence of REV3L promotes p53-regulated cancer cell metabolism in cisplatin-treated lung carcinoma cells

机译:REV3L的缺乏促进顺铂治疗的肺癌细胞中p53调控的癌细胞代谢

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摘要

Lung cancer is one of the deadliest cancers in the world because of chemo-resistance to the commonly used cisplatin-based treatments. The use of low fidelity DNA polymerases in the translesional synthesis (TLS) DNA damage response pathway that repairs lesions caused by cisplatin also presents a mutational carcinogenic burden on cells that needs to be regulated by the tumor suppressor protein p53. However, there is much debate over the roles of the reversionless 3-like (REV3L) protein responsible for TLS and p53 in regulating cancer cell metabolism. In this study, the fluorescence lifetime of the metabolic coenzyme NADH reveals that the absence of REV3L can promote the p53-mediated upregulation of oxidative phosphorylation in cisplatin-treated H1299 lung carcinoma cells and increases cancer cell sensitivity to this platinum-based chemotherapy. These results demonstrate a previously unrecognized relationship between p53 and REV3L in cancer cell metabolism and may lead to improvements in chemotherapy treatment plans that reduce cisplatin resistance in lung cancer.
机译:肺癌是世界上最致命的癌症之一,因为它对常用的基于顺铂的疗法具有化学耐药性。在修复由顺铂引起的损伤的跨病灶合成(TLS)DNA损伤反应途径中使用低保真DNA聚合酶也给细胞造成了突变的致癌负担,需要通过肿瘤抑制蛋白p53对其进行调节。但是,关于负责TLS和p53的无逆转录3样(REV3L)蛋白在调节癌细胞代谢中的作用存在许多争议。在这项研究中,代谢辅酶NADH的荧光寿命表明,REV3L的缺失可以促进顺铂治疗的H1299肺癌细胞中p53介导的氧化磷酸化上调,并增加癌细胞对该铂类化学疗法的敏感性。这些结果证明了癌细胞代谢中p53和REV3L之间以前不可识别的关系,并且可能导致化疗方案的改善,从而降低肺癌对顺铂的耐药性。

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