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人乳头瘤病毒E6蛋白在体内将p53作为靶标进行降解的能力与其消除放线菌素D诱导的生长停滞的能力相关。

The ability of human papillomavirus E6 proteins to target p53 for degradation in vivo correlates with their ability to abrogate actinomycin D-induced growth arrest.

作者信息

Foster S A, Demers G W, Etscheid B G, Galloway D A

机构信息

Fred Hutchinson Cancer Research Center, Seattle, Washington 98104.

出版信息

J Virol. 1994 Sep;68(9):5698-705. doi: 10.1128/JVI.68.9.5698-5705.1994.

Abstract

Functional p53 protein is associated with the ability of cells to arrest in G1 after DNA damage. The E6 protein of cancer-associated human papillomavirus type 16 (HPV-16) binds to p53 and targets its degradation through the ubiquitin pathway. To determine whether the ability of E6 to interact with p53 leads to a disruption of cell cycle control, mutated E6 proteins were tested for p53 binding and p53 degradation targeting in vitro, the ability to reduce intracellular p53 levels in vivo, and the ability to abrogate actinomycin D-induced growth arrest in human keratinocytes. Mutations scattered throughout the amino terminus, either zinc finger or the central region but not the carboxy terminus, severely reduced the ability of E6 to interact with p53. Expression of HPV-16 E6 or mutated E6 proteins that bound and targeted p53 for degradation in vitro sharply reduced the level of intracellular p53 induced by actinomycin D in human keratinocytes. A perfect correlation between the ability of E6 proteins to reduce the level of intracellular p53 and their ability to block actinomycin D-induced cellular growth arrest was observed. These results suggest that interaction with p53 is important for the ability of HPV E6 proteins to circumvent growth arrest.

摘要

功能性p53蛋白与细胞在DNA损伤后停滞于G1期的能力相关。16型癌症相关人乳头瘤病毒(HPV - 16)的E6蛋白与p53结合,并通过泛素途径靶向其降解。为了确定E6与p53相互作用的能力是否会导致细胞周期控制的破坏,对突变的E6蛋白进行了体外p53结合和p53降解靶向测试、体内降低细胞内p53水平的能力测试,以及消除放线菌素D诱导的人角质形成细胞生长停滞的能力测试。散布在整个氨基末端(锌指或中央区域而非羧基末端)的突变严重降低了E6与p53相互作用的能力。在体外结合并靶向p53进行降解的HPV - 16 E6或突变E6蛋白的表达,显著降低了放线菌素D在人角质形成细胞中诱导的细胞内p53水平。观察到E6蛋白降低细胞内p53水平的能力与其阻断放线菌素D诱导的细胞生长停滞的能力之间存在完美的相关性。这些结果表明,与p53相互作用对于HPV E6蛋白规避生长停滞的能力很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc91/236972/3051d8e99226/jvirol00018-0378-a.jpg

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