Department of Gynecology and Obstetrics, Renmin Hospital of Wuhan University, Wuhan, 430062, China.
Department of Gastroenterology, Renmin Hospital of Wuhan University, Wuhan, 430062, China.
Curr Med Sci. 2018 Apr;38(2):212-221. doi: 10.1007/s11596-018-1868-3. Epub 2018 Apr 30.
The objectives of this study were to investigate the effects of the CRISPR/Cas9 system mediated by the HPV pseudotype virus on SiHa cytobiology behavior by cutting the HPV16 E6 gene selectively and to explore the role of this system in the treatment of cervical cancer. After designing specific gRNA sequences targeting HPV16 E6, generating hCas9-EGFP and E6-gRNA-RFP plasmids, and preparing the pseudovirus of HPV16 carrying E6-gRNA and Cas9 plasmids, we determined the titer of the pseudotype virus using the TCID50 method. We obtained the pseudotype virus of HPV16 carrying E6-gRNA and Cas9 plasmids to transfect cervical cancer SiHa cells. Experimental subjects were divided into control group, empty virus group, E6-gRNA transfected group, Cas9 transfected group and Cas9+E6-gRNA transfected group. The molecular size of the cutting sequence was detected using the T7E1 enzyme digestion method and agarose gel electrophoresis, and the cleavage function of CRISPR/Cas9 on the E6 gene was determined at the same time. RT-PCR and Western blotting were performed to detect the mRNA and protein expression levels of E6 in all the groups; the Transwell cell migration assay was performed to detect the cell migration ability and metastasis in all groups. Heterotopic transplantation tumors were incorporated into mice and were used to investigate the effects of the CRISPR/Cas9 system mediated by the HPV pseudovirus on the tumorigenic ability of SiHa cells by selectively cutting HPV16 E6. The HPV16 pseudotype virus carrying E6-gRNA and Cas9 plasmids could successfully infect SiHa cells, and there were two cutting zones in the Cas9+E6-gRNA transfected group. However, the empty virus group, E6-gRNA transfected group and Cas9 transfected group had no corresponding zone. Compared with those in the control group, the empty virus group, E6-gRNA transfected group and Cas9 transfected group, the mRNA and protein expression levels of E6 in SiHa cells were downregulated in the Cas9+E6-gRNA transfected group (P<0.01). In addition, the proliferation and migration abilities of SiHa cells were significantly inhibited (P<0.01). There were no significant differences among the other groups. In contrast to the control group, the HPV pseudotype virus carrying E6-gRNA and Cas9 plasmids could significantly delay the growth of tumor cells of the ectopic tumor transplantation model (P<0.01). The CRISPR/Cas9 system mediated by the HPV pseudotype virus to knockout E6 gene expression exhibited a clear inhibitory effect on the biological function of SiHa cells, which indicated that knocking out the E6 gene using the CRISPR/Cas9 system mediated by the HPV pseudotype virus had a potential effect of eliminating HPV infection and inhibiting the growth of HPV-related tumors. Taken together, these findings provide insight into a new treatment strategy for the prevention and treatment of hr-HPV infected disease, particularly in HPV-related tumors.
本研究旨在通过靶向切割 HPV16 E6 基因的 CRISPR/Cas9 系统,研究 HPV 假病毒介导的该系统对 SiHa 细胞生物学行为的影响,并探讨该系统在宫颈癌治疗中的作用。在设计针对 HPV16 E6 的特异性 gRNA 序列后,生成 hCas9-EGFP 和 E6-gRNA-RFP 质粒,并制备携带 E6-gRNA 和 Cas9 质粒的 HPV16 假病毒后,我们采用 TCID50 法测定假病毒滴度。获得携带 E6-gRNA 和 Cas9 质粒的 HPV16 假病毒,转染宫颈癌 SiHa 细胞。实验对象分为对照组、空病毒组、E6-gRNA 转染组、Cas9 转染组和 Cas9+E6-gRNA 转染组。采用 T7E1 酶消化法和琼脂糖凝胶电泳检测切割序列的分子大小,同时检测 CRISPR/Cas9 对 E6 基因的切割功能。采用 RT-PCR 和 Western blot 检测各组 E6 的 mRNA 和蛋白表达水平;采用 Transwell 细胞迁移实验检测各组细胞的迁移能力和转移能力。将异质移植瘤纳入小鼠,通过选择性切割 HPV16 E6 研究 HPV 假病毒介导的 CRISPR/Cas9 系统对 SiHa 细胞致瘤能力的影响。携带 E6-gRNA 和 Cas9 质粒的 HPV16 假型病毒能够成功感染 SiHa 细胞,Cas9+E6-gRNA 转染组有两个切割区。然而,空病毒组、E6-gRNA 转染组和 Cas9 转染组没有相应的区域。与对照组、空病毒组、E6-gRNA 转染组和 Cas9 转染组相比,Cas9+E6-gRNA 转染组 SiHa 细胞中 E6 的 mRNA 和蛋白表达水平下调(P<0.01)。此外,SiHa 细胞的增殖和迁移能力也明显受到抑制(P<0.01)。其他组之间没有差异。与对照组相比,携带 E6-gRNA 和 Cas9 质粒的 HPV 假型病毒能明显延缓异位移植瘤模型肿瘤细胞的生长(P<0.01)。携带 E6-gRNA 和 Cas9 质粒的 HPV 假型病毒介导的 CRISPR/Cas9 系统敲除 E6 基因表达对 SiHa 细胞的生物学功能表现出明显的抑制作用,表明利用 HPV 假型病毒介导的 CRISPR/Cas9 系统敲除 E6 基因具有消除 HPV 感染和抑制 HPV 相关肿瘤生长的潜在作用。综上所述,这些发现为预防和治疗高危型 HPV 感染性疾病,特别是 HPV 相关肿瘤提供了新的治疗策略。