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E6 and E7 gene silencing results in decreased methylation of tumor suppressor genes and induces phenotype transformation of human cervical carcinoma cell lines

机译:E6和E7基因沉默导致肿瘤抑制基因的甲基化降低并诱导人宫颈癌细胞系的表型转化

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摘要

In SiHa and CaSki cells, E6 and E7-targeting shRNA specifically and effectively knocked down human papillomavirus (HPV) 16 E6 and E7 at the transcriptional level, reduced the E6 and E7 mRNA levels by more than 80% compared with control cells that expressed a scrambled-sequence shRNA. E6 and E7 repression resulted in down-regulation of DNA methyltransferase mRNA and protein expression, decreased DNA methylation and increased mRNA expression levels of tumor suppressor genes, induced a certain apoptosis and inhibited proliferation in E6 and E7 shRNA-infected SiHa and CaSki cells compared with the uninfected cells. Repression of E6 and E7 oncogenes resulted in restoration of DNA methyltransferase suppressor pathways and induced apoptosis in HPV16-positive cervical carcinoma cell lines. Our findings suggest that the potential carcinogenic mechanism of HPV16 through influencing DNA methylation pathway to activate the development of cervical cancer exist, and maybe as a candidate therapeutic strategy for cervical and other HPV-associated cancers.
机译:在SiHa和CaSki细胞中,靶向E6和E7的shRNA在转录水平上特异性和有效地敲低人乳头瘤病毒(HPV)16 E6和E7,与表达A6和E7的对照细胞相比,将E6和E7 mRNA水平降低了80%以上。加扰序列shRNA。与E6和E7 shRNA感染的SiHa和CaSki细胞相比,E6和E7抑制导致DNA甲基转移酶mRNA和蛋白表达下调,DNA甲基化降低和肿瘤抑制基因的mRNA表达水平升高,诱导一定的凋亡并抑制E6和E7 shRNA感染的SiHa和CaSki细胞的增殖。未感染的细胞。 E6和E7癌基因的抑制导致HPV16阳性宫颈癌细胞株DNA甲基转移酶抑制剂通路的恢复并诱导细胞凋亡。我们的发现表明存在通过影响DNA甲基化途径激活宫颈癌发展的HPV16潜在致癌机制,并且可能作为宫颈癌和其他与HPV相关的癌症的候选治疗策略。

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