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纯化的维斯纳病毒整合酶的体外活性

In vitro activities of purified visna virus integrase.

作者信息

Katzman M, Sudol M

机构信息

Department of Medicine, Milton S. Hershey Medical Center, Pennsylvania State University College of Medicine, Hershey 17033.

出版信息

J Virol. 1994 Jun;68(6):3558-69. doi: 10.1128/JVI.68.6.3558-3569.1994.

Abstract

Although integration generally is considered a critical step in the retrovirus life cycle, it has been reported that visna virus, which causes degenerative neurologic disease in sheep, can productively infect sheep choroid plexus cells without detectable integration. To ascertain whether the integrase (IN) of visna virus is an inherently defective enzyme and to create tools for further study of integration of the phylogenetically related human immunodeficiency virus type 1 (HIV-1), we purified visna virus IN by using a bacterial expression system and applied various in vitro oligonucleotide-based assays to studying this protein. We found that visna virus IN demonstrates the full repertoire of in vitro functions characteristic of retroviral integrases. In particular, visna virus IN exhibits site-specific endonuclease activity following the invariant CA found two nucleotides from the 3' ends of viral DNA (processing activity), joins processed oligonucleotides to various sites on other oligonucleotides (strand transfer or integration activity), and reverses the integration reaction by resolving a complex that mimics one end of viral DNA integrated into host DNA (disintegration activity). In addition, although it has been reported that purified HIV-1 IN cannot specifically nick visna virus DNA ends, purified visna virus IN does specifically process and integrate HIV-1 DNA ends.

摘要

虽然整合通常被认为是逆转录病毒生命周期中的关键步骤,但据报道,导致绵羊发生退行性神经疾病的维斯纳病毒,可在未检测到整合的情况下有效感染绵羊脉络丛细胞。为确定维斯纳病毒的整合酶(IN)是否为固有缺陷酶,并为进一步研究系统发育相关的人类免疫缺陷病毒1型(HIV-1)的整合创造工具,我们利用细菌表达系统纯化了维斯纳病毒IN,并应用各种基于体外寡核苷酸的试验来研究这种蛋白质。我们发现,维斯纳病毒IN表现出逆转录病毒整合酶特有的全套体外功能。特别是,维斯纳病毒IN在病毒DNA 3'端两个核苷酸处发现不变的CA后表现出位点特异性内切核酸酶活性(加工活性),将加工后的寡核苷酸连接到其他寡核苷酸的各个位点(链转移或整合活性),并通过解析模拟整合到宿主DNA中的病毒DNA一端的复合物来逆转整合反应(解离活性)。此外,虽然据报道纯化的HIV-1 IN不能特异性切割维斯纳病毒DNA末端,但纯化的维斯纳病毒IN确实能特异性加工和整合HIV-1 DNA末端。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/70c6/236860/083204080c73/jvirol00015-0120-a.jpg

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