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复制缺陷型猿猴病毒40突变体T抗原的解旋酶、DNA结合及免疫学特性

Helicase, DNA-binding, and immunological properties of replication-defective simian virus 40 mutant T antigens.

作者信息

Auborn K, Guo M, Prives C

机构信息

Department of Biological Sciences, Columbia University, New York, New York 10027.

出版信息

J Virol. 1989 Feb;63(2):912-8. doi: 10.1128/JVI.63.2.912-918.1989.

Abstract

Simian virus 40 T antigen (TAg) exhibits nonspecific and origin-specific DNA binding (ori binding) and ATPase and helicase activities, all of which are related to its roles in viral DNA replication. We have characterized some of the properties of four replication-defective but transformation-competent mutant TAgs, C6-2, T22, C11, and C8A. C6-2 and T22 TAgs were each previously determined to lack ori-binding properties, while C11 TAg was reported to lack ATPase activity. The C8A TAg did not exhibit defects in either ori-binding or ATPase functions. We have analyzed additional aspects of these mutant TAgs pertaining to their helicase, DNA-binding, and immunological properties. With the exception of the C11 TAg, all the other TAgs exhibited helicase activity. The lack of helicase activity by C11 TAg was consistent with its previously shown inability to hydrolyze ATP or to replicate viral DNA. These results therefore show that ori-binding and helicase activities are separate functions of TAg. Wild-type and mutant TAgs bound with similar efficiency to either native or denatured calf thymus DNA-cellulose, indicating no marked differences in their nonspecific DNA-binding properties. We also tested the binding of wild-type and mutant TAgs to a monoclonal antibody, PAb 100, that was previously shown to recognize an extremely small class of TAg that may represent a unique conformational form of the protein. Interestingly, while less than 10% of the wild-type, C6-2, C11, and T22 mutant TAgs were recognized by PAb 100, more than 60% of the C8A mutant TAg was bound by this antibody. Therefore, although no defect in biochemical function was observed with the C8A TAg, its deficiency in viral DNA replication may be related to an unusual conformation, as detected by its dramatically increased recognition by PAb 100. These results show that the helicase activity of TAg is not required for its transformation function.

摘要

猿猴病毒40 T抗原(TAg)具有非特异性和起源特异性DNA结合(ori结合)以及ATP酶和解旋酶活性,所有这些都与其在病毒DNA复制中的作用相关。我们已经对四种复制缺陷但具有转化能力的突变TAg,即C6-2、T22、C11和C8A的一些特性进行了表征。先前已确定C6-2和T22 TAg各自缺乏ori结合特性,而据报道C11 TAg缺乏ATP酶活性。C8A TAg在ori结合或ATP酶功能方面均未表现出缺陷。我们已经分析了这些突变TAg在解旋酶、DNA结合和免疫学特性方面的其他方面。除了C11 TAg外,所有其他TAg都表现出解旋酶活性。C11 TAg缺乏解旋酶活性与其先前显示的无法水解ATP或复制病毒DNA一致。因此,这些结果表明ori结合和解旋酶活性是TAg的不同功能。野生型和突变型TAg与天然或变性的小牛胸腺DNA纤维素的结合效率相似,表明它们的非特异性DNA结合特性没有明显差异。我们还测试了野生型和突变型TAg与单克隆抗体PAb 100的结合,先前已证明该抗体可识别一类极小的TAg,这类TAg可能代表该蛋白的独特构象形式。有趣的是,虽然野生型、C6-2、C11和T22突变型TAg中不到10%被PAb 100识别,但超过60%的C8A突变型TAg被该抗体结合。因此,尽管C8A TAg在生化功能上未观察到缺陷,但其在病毒DNA复制中的缺陷可能与一种异常构象有关,这通过其被PAb 100显著增加的识别得以检测。这些结果表明TAg的解旋酶活性对于其转化功能不是必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/48cb/247765/94dd086500b6/jvirol00069-0456-a.jpg

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