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松鼠猴疱疹病毒Tip-484膜蛋白显著增加T细胞中的p56lck活性。

Herpesvirus saimiri Tip-484 membrane protein markedly increases p56lck activity in T cells.

作者信息

Lund T, Medveczky M M, Medveczky P G

机构信息

Department of Microbiology and Immunology, University of South Florida, Tampa 33612-4799, USA.

出版信息

J Virol. 1997 Jan;71(1):378-82. doi: 10.1128/JVI.71.1.378-382.1997.

Abstract

Herpesvirus saimiri (HVS) is a T-cell-specific transforming and oncogenic virus. A protein encoded by HVS known as Tip-484 (for tyrosine kinase interacting protein from HVS strain 484) is required for this transformation. Tip-484 binds specifically to the nonreceptor protein tyrosine kinase p56lck. By transfecting Tip-484 into T cells, we now show that this interaction leads to a several hundred-fold increase in the kinase activity of p56lck. Tip-484 is part of a protein complex which is dependent on the presence of p56lck and is phosphorylated. We also show that two of the complexed proteins represent two phosphorylated forms of Tip-484. Furthermore, the p56lck kinase activity in HVS-infected human peripheral blood T lymphocytes was at least ninefold higher than that in noninfected control cells and significantly decreased in cells infected with a Tip-484 deletion mutant virus. Finally, we report that Tip-484 is required for oncogenesis in rabbits by the survival of rabbits inoculated with Tip-484 deletion mutant HVS. The data demonstrate dramatic stimulation of the signaling pathway of p56lck. This effect can contribute to the molecular mechanisms that lead to sustained autocrine secretion of growth factors, permanent T-cell growth, and ultimately lymphocytic tumor formation.

摘要

赛米利疱疹病毒(HVS)是一种T细胞特异性转化致癌病毒。HVS编码的一种名为Tip - 484(来自HVS 484株的酪氨酸激酶相互作用蛋白)的蛋白质是这种转化所必需的。Tip - 484特异性结合非受体蛋白酪氨酸激酶p56lck。通过将Tip - 484转染到T细胞中,我们现在表明这种相互作用导致p56lck的激酶活性增加数百倍。Tip - 484是一种蛋白质复合物的一部分,该复合物依赖于p56lck的存在并被磷酸化。我们还表明,其中两种复合蛋白代表Tip - 484的两种磷酸化形式。此外,HVS感染的人外周血T淋巴细胞中的p56lck激酶活性比未感染的对照细胞至少高九倍,而在感染Tip - 484缺失突变病毒的细胞中则显著降低。最后,我们报告说,接种Tip - 484缺失突变HVS的兔子存活需要Tip - 484才能发生肿瘤。数据表明p56lck信号通路受到显著刺激。这种效应可能有助于导致生长因子持续自分泌、T细胞永久生长并最终形成淋巴细胞肿瘤的分子机制。

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