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β3 型人乳头瘤病毒 E6 和 E7 蛋白的转化特性。

Transforming Properties of Beta-3 Human Papillomavirus E6 and E7 Proteins.

机构信息

International Agency for Research on Cancer (IARC), World Health Organization, Lyon, France.

Deutsches Krebsforschungszentrum (DKFZ), Heidelberg, Germany.

出版信息

mSphere. 2020 Jul 15;5(4):e00398-20. doi: 10.1128/mSphere.00398-20.

Abstract

The beta human papillomaviruses (HPVs) are subdivided into 5 species (beta-1 to beta-5), and they were first identified in the skin. However, the beta-3 species appears to be more highly represented in the mucosal epithelia than in the skin. Functional studies have also highlighted that beta-3 HPV49 shares some functional similarities with mucosal high-risk (HR) HPV16. Here, we describe the characterization of the transforming properties of the entire beta-3 species, which includes three additional HPV types: HPV75, HPV76, and HPV115. HPV49, HPV75, and HPV76 E6 and E7 (E6/E7), but not HPV115 E6 and E7, efficiently inactivate the p53 and pRb pathways and immortalize or extend the life span of human foreskin keratinocytes (HFKs). As observed for HR HPV16, cell cycle deregulation mediated by beta-3 HPV E6/E7 expression leads to p16 accumulation, whereas no p16 was detected in beta-2 HPV38 E6/E7 HFKs. As shown for HPV49 E6, HPV75 and HPV76 E6s degrade p53 by an E6AP/proteasome-mediated mechanism. Comparative analysis of cellular gene expression patterns of HFKs containing E6 and E7 from HR HPV16, beta-3 HPV types, and beta-2 HPV38 further highlights the functional similarities of HR HPV16 and beta-3 HPV49, HPV75, and HPV76. The expression profiles of these four HPV HFKs show some similarities and diverge substantially from those of beta-3 HPV115 E6/E7 and beta-2 HPV38 E6/E7 HFKs. In summary, our data show that beta-3 HPV types share some mechanisms with HR HPV types and pave the way for additional studies aiming to evaluate their potential role in human pathologies. Human papillomaviruses are currently classified in different genera. Mucosal HPVs belonging to the alpha genus have been clearly associated with carcinogenesis of the mucosal epithelium at different sites. Beta HPV types have been classified as cutaneous. Although findings indicate that some beta HPVs from species 1 and 2 play a role, together with UV irradiation, in skin cancer, very little is known about the transforming properties of most of the beta HPVs. This report shows the transforming activity of E6 and E7 from beta-3 HPV types. Moreover, it highlights that beta-3 HPVs share some biological properties more extensively with mucosal high-risk HPV16 than with beta-2 HPV38. This report provides new paradigms for a better understanding of the biology of the different HPV types and their possible association with lesions at mucosal and/or cutaneous epithelia.

摘要

β 型人乳头瘤病毒(HPV)分为 5 个种(β-1 至β-5),最初在皮肤中发现。然而,β-3 种似乎在黏膜上皮中比皮肤中更为普遍。功能研究也强调,β-3 HPV49 与黏膜高危型(HR)HPV16 具有一些功能相似性。在这里,我们描述了整个β-3 种的转化特性的特征,其中包括另外三种 HPV 类型:HPV75、HPV76 和 HPV115。HPV49、HPV75 和 HPV76 的 E6 和 E7(E6/E7),但 HPV115 的 E6 和 E7 不能有效地使人类包皮角质形成细胞(HFK)失活、永生化或延长寿命。与 HR HPV16 一样,β-3 HPV E6/E7 表达引起的细胞周期失调导致 p16 积累,而β-2 HPV38 的 E6/E7 HFK 中未检测到 p16。如 HPV49 E6 所示,HPV75 和 HPV76 E6 通过 E6AP/蛋白酶体介导的机制降解 p53。对包含 HR HPV16、β-3 HPV 类型和β-2 HPV38 的 E6 和 E7 的 HFK 的细胞基因表达模式的比较分析进一步突出了 HR HPV16 和β-3 HPV49、HPV75 和 HPV76 的功能相似性。这四种 HPV HFK 的表达谱显示出一些相似之处,并且与β-3 HPV115 E6/E7 和β-2 HPV38 E6/E7 HFK 有很大的不同。总之,我们的数据表明,β-3 HPV 类型与 HR HPV 类型具有一些共同的机制,并为评估它们在人类病理中的潜在作用的进一步研究铺平了道路。人乳头瘤病毒目前分为不同的属。属于α属的黏膜 HPV 已被明确与不同部位的黏膜上皮癌发生有关。β HPV 类型被归类为皮肤。尽管研究结果表明,一些来自 1 型和 2 型的β HPV 在皮肤癌中与 UV 照射一起发挥作用,但对于大多数β HPV 的转化特性知之甚少。本报告显示了β-3 HPV 类型的 E6 和 E7 的转化活性。此外,它还强调了β-3 HPV 与黏膜高危型 HPV16 的生物学特性比与β-2 HPV38 更为广泛。本报告为更好地理解不同 HPV 类型的生物学特性及其与黏膜和/或皮肤上皮病变的可能关联提供了新的范例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c9f/7364212/2d79d4de314e/mSphere.00398-20-f0001.jpg

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