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pp60c-src的羧基末端是一个调节结构域,参与与多瘤病毒中间T抗原的复合物形成。

The carboxy terminus of pp60c-src is a regulatory domain and is involved in complex formation with the middle-T antigen of polyomavirus.

作者信息

Cheng S H, Piwnica-Worms H, Harvey R W, Roberts T M, Smith A E

机构信息

Laboratory of Cellular Regulation, Integrated Genetics Inc., Framingham, Massachusetts 01701.

出版信息

Mol Cell Biol. 1988 Apr;8(4):1736-47. doi: 10.1128/mcb.8.4.1736-1747.1988.

Abstract

A large number of mutations were introduced into the carboxy-terminal domain of pp60c-src. The level of phosphorylation on Tyr-416 and Tyr-527, the transforming activity (as measured by focus formation on NIH 3T3 cells), kinase activity, and the ability of the mutant pp60c-src to associate with the middle-T antigen of polyomavirus were examined. The results indicate that Tyr-527 is a major carboxy-terminal element responsible for regulating pp60c-src in vivo. A good but not perfect correlation exists between lack of phosphorylation at Tyr-527 and increased phosphorylation at Tyr-416, between elevated phosphorylation on Tyr-416 and activated kinase activity, and between activated kinase activity and transforming activity. Phosphorylation of Tyr-527 was insensitive to the mutation of adjacent residues, indicating that the primary sequence only has a minor role in recognition by kinases or phosphatases which regulate it in vivo. Three mutants which have in common a modified Glu-524 residue were phosphorylated on Tyr-416 and Tyr-527 and were weakly transforming. This suggests that other mechanisms besides complete dephosphorylation of Tyr-527 can lead to increased phosphorylation of Tyr-416 and activation of the transforming activity of pp60c-src. Furthermore, the residues between Asp-518 and Pro-525 were required to form a stable complex with middle-T antigen. The proximity of these sequences to Tyr-527 suggests a model in which middle-T activates pp60c-src by binding directly to this region of the molecular and thereby preventing phosphorylation of Tyr-527. Alternatively, middle-T binding may mediate a conformational change in this region, which in turn induces an alteration in the level of phosphorylation at Tyr-527 and Tyr-416.

摘要

大量突变被引入到pp60c-src的羧基末端结构域。检测了Tyr-416和Tyr-527位点的磷酸化水平、转化活性(通过NIH 3T3细胞上的集落形成来衡量)、激酶活性以及突变型pp60c-src与多瘤病毒中间T抗原结合的能力。结果表明,Tyr-527是体内调节pp60c-src的主要羧基末端元件。Tyr-527磷酸化缺失与Tyr-416磷酸化增加之间、Tyr-416磷酸化水平升高与激酶活性激活之间、激酶活性激活与转化活性之间存在良好但并非完美的相关性。Tyr-527的磷酸化对相邻残基的突变不敏感,这表明一级序列在体内调节它的激酶或磷酸酶的识别中仅起次要作用。三个共同具有修饰的Glu-524残基的突变体在Tyr-416和Tyr-527位点发生了磷酸化,且转化能力较弱。这表明除了Tyr-527完全去磷酸化之外,其他机制也可导致Tyr-416磷酸化增加以及pp60c-src转化活性的激活。此外,Asp-518和Pro-525之间的残基是与中间T抗原形成稳定复合物所必需的。这些序列与Tyr-527的接近程度提示了一种模型,即中间T通过直接结合到分子的该区域来激活pp60c-src,从而阻止Tyr-527的磷酸化。或者,中间T的结合可能介导该区域的构象变化,进而导致Tyr-527和Tyr-416磷酸化水平的改变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/98d5/363334/8661dd02e711/molcellb00064-0368-a.jpg

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