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首页> 外文期刊>MBio >Expression of the Long Noncoding RNA DINO in Human Papillomavirus-Positive Cervical Cancer Cells Reactivates the Dormant TP53 Tumor Suppressor through ATM/CHK2 Signaling
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Expression of the Long Noncoding RNA DINO in Human Papillomavirus-Positive Cervical Cancer Cells Reactivates the Dormant TP53 Tumor Suppressor through ATM/CHK2 Signaling

机译:在人乳头瘤病毒阳性宫颈癌细胞中长的非数性RNA迪诺的表达可通过ATM / CHK2信号传导重新激活DORMANTTP53肿瘤抑制器

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摘要

Tumor cells overcome the cytostatic and cytotoxic restraints of TP53 tumor suppressor signaling through a variety of mechanisms. High-risk human papillomavirus (HPV)-positive tumor cells retain wild-type TP53 because the HPV E6/UBE3A ubiquitin ligase complex targets TP53 for proteasomal degradation. While restoration of TP53 in tumor cells holds great promise for cancer therapy, attempts to functionally restore the dormant TP53 tumor suppressor in HPV-positive cancer cells by inhibiting the HPV E6/UBE3A ubiquitin ligase complex have not yet been successful. The damage-induced long noncoding RNA, DINO (DINOL), is a TP53 transcriptional target that has been reported to bind to and stabilize TP53, thereby amplifying TP53 signaling. We show that HPV-positive cervical carcinoma cells contain low levels of DINO because of HPV E6/UBE3A-mediated TP53 degradation. Acute DINO expression overrides HPV16 E6/UBE3A-mediated TP53 degradation, causing TP53 stabilization and increased expression of TP53 transcriptional target genes. This causes a marked sensitization to chemotherapy agents and renders cells vulnerable to metabolic stress. Acute DINO expression in HPV-positive cervical cancer cells induces hallmarks of DNA damage response signaling, and TP53 activation involves ATM/CHK2 signaling. DINO upregulation in response to DNA damage is independent of ATM/CHK2 and can occur in cancer cells that express mutant TP53.
机译:肿瘤细胞通过各种机制克服TP53肿瘤抑制信号传导的细胞抑制和细胞毒性约束。高风险的人乳头瘤病毒(HPV) - 阳性肿瘤细胞保留野生型TP53,因为HPV E6 / UBE3A泛素连接酶复合靶TP53用于蛋白酶体降解。虽然TP53在肿瘤细胞中的TP53对癌症治疗具有很大的承担,但通过抑制HPV E6 / UBE3A泛素连接酶复合物尚未成功,在HPV阳性癌细胞中尝试在HPV阳性癌细胞中进行功能恢复休眠TP53肿瘤抑制剂。损伤诱导的长非编码RNA,DINO(DINOL)是据报道结合和稳定TP53的TP53转录靶,从而放大TP53信号传导。我们表明,由于HPV E6 / UBE3A介导的TP53降解,HPV阳性宫颈癌细胞含有低水平的酸酐。急性Dino表达覆盖HPV16 E6 / UBE3A介导的TP53降解,导致TP53稳定化和TP53转录靶基因的表达增加。这导致对化疗剂的显着敏化,并且易受代谢应激的细胞。 HPV阳性宫颈癌细胞中的急性Dino表达诱导DNA损伤响应信号传导的标志,TP53激活涉及ATM / CHK2信号传导。 Dino响应DNA损伤的上调是差异的,与ATM / CHK2无关,并且可以在表达突变体TP53的癌细胞中发生。

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