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通过突变和互补分析确定的莫洛尼鼠白血病病毒整合酶的功能结构域

Functional domains of Moloney murine leukemia virus integrase defined by mutation and complementation analysis.

作者信息

Jonsson C B, Donzella G A, Gaucan E, Smith C M, Roth M J

机构信息

Department of Biochemistry, Robert W. Johnson Medical School, University of Medicine and Dentistry of New Jersey, Piscataway, New Jersey 08854, USA.

出版信息

J Virol. 1996 Jul;70(7):4585-97. doi: 10.1128/JVI.70.7.4585-4597.1996.

Abstract

Retroviral integrases perform two catalytic steps, 3' processing and strand transfer, that result in the stable insertion of the retroviral DNA into the host genome. Mutant M-MuLV integrases were constructed to define the functional domains important for 3' processing, strand transfer, and disintegration by in vitro assays. N-terminal mutants had no detectable 3' processing activity, and only one mutant which lacks the HHCC domain, Ndelta105, had strand transfer activity. Strand transfer mediated by Ndelta105 showed preference for one site in the target DNA. Disintegration activity of N-terminal mutants decreased only minimally. In contrast, all C-terminal mutants truncated by more than 28 amino acids had no integration or disintegration activity. Activity on a single-strand disintegration substrate did not require a functional HHCC domain but did require most of the C-terminal region. Complementation analysis found that the HHCC region alone was able to function in trans to a promoter containing only the DD(35)E and C-terminal regions and to enhance integration site selection. Increasing the reducing conditions or adding the HHCC domain to Ndelta105 reaction mixtures restored the wild-type strand transfer activity and range of target sites. The reducing agent affected Cys-209 in the DD(35)E region. The presence of C-209 was required for complementation of Ndelta105 by the HHCC region.

摘要

逆转录病毒整合酶执行两个催化步骤,即3'加工和链转移,这导致逆转录病毒DNA稳定插入宿主基因组。构建了突变型莫洛尼鼠白血病病毒(M-MuLV)整合酶,通过体外试验来确定对3'加工、链转移和解离重要的功能结构域。N端突变体没有可检测到的3'加工活性,只有一个缺乏HHCC结构域的突变体Ndelta105具有链转移活性。由Ndelta105介导的链转移显示出对靶DNA中一个位点的偏好。N端突变体的解离活性仅略有下降。相比之下,所有C端截短超过28个氨基酸的突变体都没有整合或解离活性。对单链解离底物的活性不需要功能性的HHCC结构域,但确实需要大部分C端区域。互补分析发现,单独的HHCC区域能够反式作用于仅包含DD(35)E和C端区域的启动子,并增强整合位点选择。增加还原条件或向Ndelta105反应混合物中添加HHCC结构域可恢复野生型链转移活性和靶位点范围。还原剂影响DD(35)E区域中的半胱氨酸-209。HHCC区域对Ndelta105进行互补需要C-209的存在。

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