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Assembly and Catalysis of Concerted Two-End Integration Events by Moloney Murine Leukemia Virus Integrase

机译:莫洛尼鼠白血病病毒整合酶在协同的两端整合事件中的组装和催化作用

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摘要

Retroviral integration results in the stable and coordinated insertion of the two termini of the linear viral DNA into the host genome. An in vitro concerted two-end integration reaction catalyzed by the Moloney murine leukemia virus (M-MuLV) integrase (IN) was used to investigate the binding and coordination of the two viral DNA ends. Comparison of the two-end integration and strand transfer assays indicates that zinc is required for efficient concerted integration utilizing plasmid DNA as target. Complementation assays using a pair of nonoverlapping integrase domains, consisting of the HHCC domain and the core/C-terminal region, yielded products containing the correct 4-base target site duplication. The efficiency of the coordinated two-end integration varied depending on the order of addition of the individual protein and DNA components in the complementation assay. Two-end integration was most efficient when the long terminal repeat (LTR) was premixed with either the target DNA or the HHCC domain. The preference for two-end integration through preincubation of the HHCC finger with the viral DNA supports the role of this domain in the recognition and/or positioning of the LTR.
机译:逆转录病毒整合导致线性病毒DNA的两个末端稳定协调地插入宿主基因组。莫洛尼鼠白血病病毒(M-MuLV)整合酶(IN)催化的体外协同的两端整合反应用于研究两个病毒DNA末端的结合和配位。两端整合和链转移分析的比较表明,利用质粒DNA作为靶标进行有效协同整合需要锌。使用一对非重叠的整合酶结构域(由HHCC结构域和核心/ C末端区域组成)进行的互补分析产生了包含正确的4个碱基靶位点重复的产物。两端互补整合的效率取决于互补测定中单个蛋白质和DNA成分的添加顺序。当长末端重复序列(LTR)与目标DNA或HHCC结构域预混合时,两末端整合最有效。通过HHCC手指与病毒DNA的预温育进行两末端整合的偏好,支持了该结构域在LTR识别和/或定位中的作用。

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