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5型腺病毒早期区域1B 156R蛋白独立于对p53刺激转录的抑制作用来促进细胞转化。

Adenovirus type 5 early region 1B 156R protein promotes cell transformation independently of repression of p53-stimulated transcription.

作者信息

Sieber Timo, Dobner Thomas

机构信息

Institut für Medizinische Mikrobiologie und Hygiene, Universität Regensburg, Germany.

出版信息

J Virol. 2007 Jan;81(1):95-105. doi: 10.1128/JVI.01608-06. Epub 2006 Oct 18.

DOI:10.1128/JVI.01608-06
PMID:17050591
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1797270/
Abstract

Early region 1B (E1B) of adenovirus type 5 (Ad5) encodes at least five different polypeptides generated by alternative splicing of a common mRNA precursor. Two of these gene products, E1B-19K and E1B-55K, are individually capable of cooperating with the Ad5 E1A proteins to completely transform rodent cells in culture. Substantial evidence suggests that these two E1B proteins contribute to cell transformation by antagonizing growth arrest and apoptosis. Here, we performed genetic and biochemical analyses to assess the attributes of the remaining E1B proteins (E1B-156R, E1B-93R, and E1B-84R). Our results show that E1B-156R, which comprises the 79 amino-terminal and 77 carboxy-terminal amino acids of E1B-55K, also enhances focal transformation of primary rat cells in cooperation with E1A. Since E1B-156R seemed unable to relocalize p53 and inhibit its transactivating function, it must be assumed that it contributes to transformation independently of repression of p53-stimulated transcription. Furthermore, we discovered that E1B-156R contains a functional transcriptional repression domain and binds Ad5 E4orf6 and the cellular apoptosis regulator Daxx. While the ability to bind E4orf6 could indicate further biological functions of E1B-156R in viral infection, the interaction with Daxx might also be linked to its transforming potential. Taken together, these analyses introduce E1B-156R as a novel transformation-promoting E1B protein that acts without repressing p53 transactivation. Moreover, identification of the interaction partners E4orf6 and Daxx provides a first glance of E1B-156R's potential functions.

摘要

5型腺病毒(Ad5)的早期区域1B(E1B)编码至少五种由共同mRNA前体的可变剪接产生的不同多肽。这些基因产物中的两种,E1B-19K和E1B-55K,各自能够与Ad5 E1A蛋白协同作用,在培养中完全转化啮齿动物细胞。大量证据表明,这两种E1B蛋白通过拮抗生长停滞和细胞凋亡来促进细胞转化。在这里,我们进行了遗传和生化分析,以评估其余E1B蛋白(E1B-156R、E1B-93R和E1B-84R)的特性。我们的结果表明,E1B-156R由E1B-55K的79个氨基末端和77个羧基末端氨基酸组成,它也能与E1A协同增强原代大鼠细胞的灶性转化。由于E1B-156R似乎无法重新定位p53并抑制其反式激活功能,因此必须假定它独立于抑制p53刺激的转录而促进转化。此外,我们发现E1B-156R含有一个功能性转录抑制结构域,并与Ad5 E4orf6和细胞凋亡调节因子Daxx结合。虽然结合E4orf6的能力可能表明E1B-156R在病毒感染中的进一步生物学功能,但与Daxx的相互作用也可能与其转化潜力有关。综上所述,这些分析将E1B-156R引入为一种新型的促进转化的E1B蛋白,其作用方式是不抑制p53反式激活。此外,对相互作用伙伴E4orf6和Daxx的鉴定初步揭示了E1B-156R的潜在功能。

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