Jaiswal Neha, Nandi Deeptashree, Cheema Pradeep Singh, Nag Alo
Department of Biochemistry, University of Delhi South Campus, Benito Juarez Marg, New Delhi, India.
Carcinogenesis. 2022 Nov 23;43(10):988-1001. doi: 10.1093/carcin/bgac057.
The transforming properties of the high-risk human papillomavirus (HPV) E7 oncoprotein are indispensable for driving the virus life cycle and pathogenesis. Besides inactivation of the retinoblastoma family of tumor suppressors as part of its oncogenic endeavors, E7-mediated perturbations of eminent cell cycle regulators, checkpoint proteins and proto-oncogenes are considered to be the tricks of its transformative traits. However, many such critical interactions are still unknown. In the present study, we have identified the anaphase-promoting complex/cyclosome (APC) co-activator, Cdh1, as a novel interacting partner and a degradation target of E7. We found that HPV16 E7-induced inactivation of Cdh1 promoted abnormal accumulation of multiple Cdh1 substrates. Such a mode of deregulation possibly contributes to HPV-mediated cervical oncogenesis. Our mapping studies recognized the C-terminal zinc-finger motif of E7 to associate with Cdh1 and interfere with the timely degradation of FoxM1, a bona fide Cdh1 substrate and a potent oncogene. Importantly, the E7 mutant with impaired interaction with Cdh1 exhibited defects in its ability for overriding typical cell cycle transition and oncogenic transformation, thereby validating the functional and pathological significance of the E7-Cdh1 axis during cervical carcinoma progression. Altogether, the findings from our study discover a unique nexus between E7 and APC/C-Cdh1, thereby adding to our understanding of the mechanism of E7-induced carcinogenesis and provide a promising target for the management of cervical carcinoma.
高危型人乳头瘤病毒(HPV)E7癌蛋白的转化特性对于驱动病毒生命周期和发病机制而言不可或缺。除了作为其致癌作用的一部分使视网膜母细胞瘤家族的肿瘤抑制因子失活外,E7介导的对重要细胞周期调节因子、检查点蛋白和原癌基因的干扰被认为是其转化特性的手段。然而,许多此类关键相互作用仍不清楚。在本研究中,我们已确定后期促进复合物/细胞周期体(APC)共激活因子Cdh1是E7的一种新型相互作用伴侣和降解靶点。我们发现HPV16 E7诱导的Cdh1失活促进了多种Cdh1底物的异常积累。这种失调模式可能有助于HPV介导的宫颈癌发生。我们的定位研究认识到E7的C末端锌指基序与Cdh1相关联,并干扰了FoxM1(一种真正的Cdh1底物和强效癌基因)的及时降解。重要的是,与Cdh1相互作用受损的E7突变体在其超越典型细胞周期转变和致癌转化的能力方面表现出缺陷,从而证实了E7 - Cdh1轴在宫颈癌进展过程中的功能和病理意义。总之,我们研究的结果发现了E7与APC/C - Cdh1之间的独特联系,从而增进了我们对E7诱导致癌机制的理解,并为宫颈癌的治疗提供了一个有前景的靶点