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病毒E2以及细胞BRD4和ZC3H4蛋白对HPV16晚期启动子的激活作用。

Activation of the HPV16 late promoter by viral E2 and cellular BRD4 and ZC3H4 proteins.

作者信息

Renner Janis, Boldt Karsten, Wieland Andreas, Grundhoff Adam, Guenther Thomas, Bluemke Patrick, Stubenrauch Frank, Iftner Thomas

机构信息

Institute for Medical Virology and Epidemiology of Viral Diseases, University Hospital Tuebingen, Eberhard Karls University Tuebingen, Tuebingen, Germany.

Institute for Ophthalmic Research, Eberhard Karls University Tuebingen, Tuebingen, Germany.

出版信息

J Virol. 2025 Aug 13:e0076225. doi: 10.1128/jvi.00762-25.

Abstract

UNLABELLED

High-risk human papillomaviruses (HPV), particularly HPV16, are major causes of anogenital and oropharyngeal cancers. The HPV late promoter, P670 in the case of HPV16, is activated upon host cell differentiation and drives the expression of viral capsid proteins. While differentiation-specific host transcription factors have been implicated in regulating this promoter, the mechanism remains incompletely understood. HPV E2 proteins activate transcription by interacting with the host protein BRD4 (Bromodomain-containing protein 4). A biotin proximity ligation screen identified several novel E2 interactors, of which many overlap with the BRD4 interactome, suggesting BRD4 mediates a large fraction of these interactions. One such interactor, ZC3H4 (Zinc finger CCCH domain-containing protein 4), is known to restrict the expression of long non-coding RNAs, including enhancer and promoter upstream antisense RNAs (uaRNAs). E2 recruits ZC3H4 in a BRD4-dependent manner to specifically activate the P670 promoter in reporter assays. Supporting this, E2 and ZC3H4 co-localize in cells with high P670 activity. ZC3H4 is upregulated during differentiation, and its knockdown in differentiated HPV16- or HPV31-positive cells reduces late viral transcripts in an E2-BRD4-dependent manner. Interestingly, knockdown of ZC3H4 does not increase viral uaRNAs, suggesting that ZC3H4 does not enhance HPV late transcription by regulating viral antisense transcription.

IMPORTANCE

High-risk human papillomaviruses (HPVs), particularly HPV16, can cause anogenital and oropharyngeal cancers. HPV16 relies on the differentiation-dependent activation of its late promoter, P670, to produce capsid proteins. While host transcription factors contribute to this regulation, the mechanisms remain incompletely defined. Our findings reveal that the viral E2 protein collaborates with the host protein BRD4-a critical transcriptional regulator-to recruit other cellular partners, such as ZC3H4. Normally, ZC3H4 suppresses non-coding RNAs in cells, but HPV16 repurposes it via BRD4 to activate P670. This interaction intensifies in differentiated cells, where ZC3H4 levels rise, and disrupting ZC3H4 specifically blocks late viral gene expression without affecting antisense viral transcription. This highlights a unique, differentiation-dependent strategy HPV16 uses to hijack host machinery for its replication.

摘要

未标记

高危型人乳头瘤病毒(HPV),尤其是HPV16,是肛门生殖器癌和口咽癌的主要病因。HPV晚期启动子,如HPV16的P670,在宿主细胞分化时被激活,并驱动病毒衣壳蛋白的表达。虽然分化特异性宿主转录因子参与调节该启动子,但其机制仍未完全了解。HPV E2蛋白通过与宿主蛋白BRD4(含溴结构域蛋白4)相互作用来激活转录。一项生物素邻近连接筛选鉴定出几种新的E2相互作用蛋白,其中许多与BRD4相互作用组重叠,这表明BRD4介导了这些相互作用中的很大一部分。其中一种相互作用蛋白,ZC3H4(含锌指CCCH结构域蛋白4),已知可限制长链非编码RNA的表达,包括增强子和启动子上游反义RNA(uaRNAs)。在报告基因检测中,E2以BRD4依赖的方式招募ZC3H4以特异性激活P670启动子。支持这一点的是,E2和ZC3H4在P670活性高的细胞中共定位。ZC3H4在分化过程中上调,在分化的HPV16或HPV31阳性细胞中敲低ZC3H4会以E2 - BRD4依赖的方式减少病毒晚期转录本。有趣的是,敲低ZC3H4不会增加病毒uaRNAs,这表明ZC3H4不会通过调节病毒反义转录来增强HPV晚期转录。

重要性

高危型人乳头瘤病毒(HPV),尤其是HPV16,可导致肛门生殖器癌和口咽癌。HPV16依赖其晚期启动子P670的分化依赖性激活来产生衣壳蛋白。虽然宿主转录因子参与这种调节,但其机制仍未完全明确。我们的研究结果表明,病毒E2蛋白与宿主蛋白BRD4(一种关键的转录调节因子)协作,招募其他细胞伙伴,如ZC3H4。通常,ZC3H4抑制细胞中的非编码RNA,但HPV16通过BRD4将其重新利用以激活P670。这种相互作用在分化细胞中增强,其中ZC3H4水平升高,破坏ZC3H4会特异性阻断病毒晚期基因表达而不影响病毒反义转录。这突出了HPV16用于劫持宿主机制进行复制的一种独特的、分化依赖性策略。

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