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人乳头瘤病毒16型E2与TopBP1的相互作用在病毒生命周期中对于E2和病毒基因组稳定性是必需的。

Human papillomavirus 16 E2 interaction with TopBP1 is required for E2 and viral genome stability during the viral life cycle.

作者信息

Prabhakar Apurva T, James Claire D, Fontan Christian T, Otoa Raymonde, Wang Xu, Bristol Molly L, Hill Ronald D, Dubey Aanchal, Morgan Iain M

出版信息

bioRxiv. 2023 Jan 13:2023.01.11.523702. doi: 10.1101/2023.01.11.523702.

Abstract

UNLABELLED

CK2 phosphorylation of HPV16 E2 at serine 23 promotes interaction with TopBP1, and this interaction is important for E2 plasmid segregation function. Here we demonstrate that the E2-TopBP1 interaction is critical for E2 and viral genome stability during the viral life cycle. Introduction of the S23A mutation into the HPV16 genome results in a loss of E2 expression and viral genome integration during organotypic rafting. Co-culture of N/Tert-1+E2-S23A cells with J2 fibroblasts results in E2-S23A degradation via the proteasome, wild-type E2 is not degraded. TopBP1 siRNA treatment of N/Tert-1+E2-WT cells results in E2 degradation only in the presence of J2 cells demonstrating the critical role for TopBP1 in maintaining E2 stability. The CK2 inhibitor CX4945 promotes E2-WT degradation in the presence of fibroblasts as it disrupts E2-TopBP1 interaction. siRNA targeting SIRT1 rescues E2-S23A stability in N/Tert-1 cells treated with J2 fibroblasts, with an increased E2-S23A acetylation. The results demonstrate that the E2-TopBP1 interaction is critical during the viral life cycle as it prevents fibroblast stimulated SIRT1 mediated deacetylation of E2 that promotes protein degradation. This means that the E2-TopBP1 complex maintains E2 and viral genome stability and that disruption of this complex can promote viral genome integration. Finally, we demonstrate that HPV11 E2 also interacts with TopBP1 and that this interaction is critical for HPV11 E2 stability in the presence of J2 cells. Treatment of N/Tert-1+11E2-WT cells with CX4945 results in 11E2 degradation. Therefore, CK2 inhibition is a therapeutic strategy for alleviating HPV11 diseases, including juvenile respiratory papillomatosis.

IMPORTANCE

Human papillomaviruses are pathogens that cause a host of diseases ranging from benign warts to cancers. There are no therapeutics available for combating these diseases that directly target viral proteins or processes, therefore we must enhance our understanding of HPV life cycles to assist with identifying novel treatments. In this report, we demonstrate that HPV16 and HPV11 E2 protein expression is dependent upon TopBP1 interaction in keratinocytes interacting with fibroblasts, which recapitulate stromal interactions in culture. The degradation of 16E2 promotes HPV16 genome integration, therefore the E2-TopBP1 interaction is critical during the viral life cycle. We demonstrate that the CK2 inhibitor CX4945 disrupts HPV11 interaction with TopBP1 and destabilizes HPV11 E2 protein in the presence of J2 fibroblasts; we propose that CX4945 could alleviate HPV11 disease burden.

摘要

未标记

人乳头瘤病毒16型(HPV16)E2蛋白丝氨酸23位点的酪蛋白激酶2(CK2)磷酸化促进其与拓扑异构酶结合蛋白1(TopBP1)的相互作用,且这种相互作用对E2质粒分离功能至关重要。在此,我们证明E2 - TopBP1相互作用在病毒生命周期中对E2和病毒基因组稳定性至关重要。将S23A突变引入HPV16基因组会导致在器官型筏培养过程中E2表达缺失和病毒基因组整合。N/Tert - 1 + E2 - S23A细胞与J2成纤维细胞共培养会导致E2 - S23A通过蛋白酶体降解,而野生型E2不会降解。用TopBP1小干扰RNA(siRNA)处理N/Tert - 1 + E2 - WT细胞仅在存在J2细胞时会导致E2降解,这证明TopBP1在维持E2稳定性中起关键作用。CK2抑制剂CX4945在存在成纤维细胞的情况下会促进E2 - WT降解,因为它会破坏E2 - TopBP1相互作用。靶向沉默信息调节因子1(SIRT1)的siRNA可挽救在用J2成纤维细胞处理的N/Tert - 1细胞中E2 - S23A的稳定性,同时E2 - S23A乙酰化增加。结果表明,E2 - TopBP1相互作用在病毒生命周期中至关重要,因为它可防止成纤维细胞刺激的SIRT1介导的E2去乙酰化,而去乙酰化会促进蛋白质降解。这意味着E2 - TopBP1复合物维持E2和病毒基因组稳定性,且该复合物的破坏会促进病毒基因组整合。最后,我们证明HPV11 E2也与TopBP1相互作用,且这种相互作用在存在J2细胞时对HPV11 E2稳定性至关重要。用CX4945处理N/Tert - 1 + 11E2 - WT细胞会导致11E2降解。因此,抑制CK2是减轻包括青少年喉乳头瘤病在内的HPV11疾病负担的一种治疗策略。

重要性

人乳头瘤病毒是导致从良性疣到癌症等一系列疾病的病原体。目前尚无直接针对病毒蛋白或过程来对抗这些疾病的治疗方法,因此我们必须加强对HPV生命周期的理解,以帮助确定新的治疗方法。在本报告中,我们证明HPV16和HPV11 E2蛋白表达依赖于角质形成细胞与成纤维细胞相互作用时与TopBP1的相互作用,而成纤维细胞在培养中模拟了基质相互作用。16E2的降解促进HPV16基因组整合,因此E2 - TopBP1相互作用在病毒生命周期中至关重要。我们证明CK2抑制剂CX4945在存在J2成纤维细胞的情况下会破坏HPV11与TopBP1的相互作用并使HPV11 E2蛋白不稳定;我们提出CX4945可减轻HPV11疾病负担。

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