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病毒癌蛋白诱导特定PDZ蛋白的错误定位,破坏紧密连接并导致上皮细胞极性缺陷。

Viral oncoprotein-induced mislocalization of select PDZ proteins disrupts tight junctions and causes polarity defects in epithelial cells.

作者信息

Latorre Isabel J, Roh Michael H, Frese Kristopher K, Weiss Robert S, Margolis Ben, Javier Ronald T

机构信息

Department of Molecular Virology and Microbiology, Baylor College of Medicine, Houston, TX 77030, USA.

出版信息

J Cell Sci. 2005 Sep 15;118(Pt 18):4283-93. doi: 10.1242/jcs.02560. Epub 2005 Sep 1.

Abstract

The development of human cancers is frequently associated with a failure of epithelial cells to form tight junctions and to establish proper apicobasal polarity. Interestingly, the oncogenic potential of the adenovirus E4-ORF1 protein correlates with its binding to the cellular PDZ proteins MUPP1, MAGI-1, ZO-2 and SAP97, the first three of which assemble protein complexes at tight junctions. Given that E4-ORF1 sequesters these three PDZ proteins in the cytoplasm of fibroblasts, we postulated that E4-ORF1 would inhibit tight junction formation in epithelial cells. Providing further support for this idea, we identified MUPP1-related PATJ, a key component of the tight junction-associated CRB3-PALS1-PATJ polarity complex, as a new PDZ-protein target for both the E4-ORF1 and high-risk human papillomavirus type 18 E6 oncoproteins. Moreover, in epithelial cells, E4-ORF1 blocked the tight junction localization of PATJ and ZO-2, as well as their interacting partners, and disrupted both the tight junction barrier and apicobasal polarity. These significant findings expose a direct link between the tumorigenic potential of E4-ORF1 and inactivation of cellular PDZ proteins involved in tight junction assembly and polarity establishment.

摘要

人类癌症的发生常常与上皮细胞无法形成紧密连接以及无法建立正确的顶-基极性有关。有趣的是,腺病毒E4-ORF1蛋白的致癌潜力与其与细胞PDZ蛋白MUPP1、MAGI-1、ZO-2和SAP97的结合相关,其中前三种蛋白在紧密连接处组装蛋白复合物。鉴于E4-ORF1将这三种PDZ蛋白隔离在成纤维细胞的细胞质中,我们推测E4-ORF1会抑制上皮细胞中紧密连接的形成。进一步支持这一观点的是,我们鉴定出与MUPP1相关的PATJ,它是紧密连接相关的CRB3-PALS1-PATJ极性复合物的关键组成部分,是E4-ORF1和高危型人乳头瘤病毒18型E6癌蛋白的新PDZ蛋白靶点。此外,在上皮细胞中,E4-ORF1阻断了PATJ和ZO-2的紧密连接定位及其相互作用伙伴,并破坏了紧密连接屏障和顶-基极性。这些重要发现揭示了E4-ORF1的致瘤潜力与参与紧密连接组装和极性建立的细胞PDZ蛋白失活之间的直接联系。

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