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首页> 外文期刊>Virology >Retrovirus DNA termini bound by integrase communicate in trans for full-site integration in vitro.
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Retrovirus DNA termini bound by integrase communicate in trans for full-site integration in vitro.

机译:整合酶结合的逆转录病毒DNA末端可进行反式交流,以进行体外全位整合。

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摘要

Integration of linear retrovirus DNA involves the concerted insertion of the viral termini (full-site integration) into the host chromosome. We investigated the interactions that occur between long terminal repeat (LTR) termini bound by avian retrovirus integrase (IN) for full-site integration in vitro. Wild-type (wt) or mutant LTR donors that possess gain-of-function ("G") or loss-of-function ("L") for full-site integration activity were used. G LTR termini are characterized as having significantly higher strand transfer activity than the wt and the L LTR termini. L LTR mutations are classified as partially or extremely defective for strand transfer activity. The L mutations were further classified by their ability to either permit or block the assembly of G or wt LTR termini into nucleoprotein complexes capable of full-site strand transfer. We demonstrated that avian myeloblastosis virus IN bound to G LTR termini increased the incorporation of partially defective L LTR termini into nucleoprotein complexes that were capable of full-site integration. The observed full-site integration activity of these assembled nucleoprotein complexes appeared to be influenced by each individual IN-LTR complex in trans. In contrast, extremely defective L LTR termini exhibited the ability to effectively block the assembly of wt LTR termini into nucleoprotein complexes capable of full-site strand transfer. Data from nonspecific DNA competition experiments suggested that IN had an apparent higher affinity for G LTR donor termini than for partially defective L LTR donor termini as measured by full-site integration activity. However, assembled nucleoprotein complexes containing either two G or two L LTR donors were stable, having a similar half-life of approximately 2 h on ice. The results suggest that LTR termini bound by IN exhibit an allosteric effect to modulate full-site integration in vitro. Similar regulatory controls also appear to exist in vivo between the wt U3 and wt U5 LTR termini in retroviruses as well as purified retrovirus preintegration complexes that promoted full-site integration in vitro. Copyright 1999 Academic Press.
机译:线性逆转录病毒DNA的整合涉及病毒末端的协同插入(全位整合)到宿主染色体中。我们调查了由禽逆转录病毒整合酶(IN)绑定的长末端重复(LTR)末端之间发生的相互作用,以进行体外全位整合。使用具有用于全位点整合活性的功能获得(“ G”)或功能丧失(“ L”)的野生型(wt)或突变体LTR供体。 G LTR末端的特征是具有比wt和L LTR末端明显更高的链转移活性。 L LTR突变被归类为链转移活性部分或极端缺陷。 L突变根据其允许或阻止G或wt LTR末端组装成能够进行全位链转移的核蛋白复合物的能力进一步分类。我们证明,与G LTR末端结合的禽成纤维细胞病病毒IN增加了将部分缺陷的L LTR末端掺入能够进行全位整合的核蛋白复合物中。这些组装的核蛋白复合物的观察到的全位点整合活性似乎受每个反式IN-LTR复合物的影响。相反,极有缺陷的L LTR末端表现出有效阻止wt LTR末端装配成能够进行全位链转移的核蛋白复合物的能力。来自非特异性DNA竞争实验的数据表明,通过全位点整合活性测量,IN对G LTR供体末端的亲和力明显高于对L LTR供体末端部分缺陷的亲和力。但是,包含两个G或两个L LTR供体的组装核蛋白复合物是稳定的,在冰上具有大约2小时的相似半衰期。结果表明,与IN结合的LTR末端具有变构作用,可在体外调节全位点整合。逆转录病毒以及在体外促进全位点整合的纯化逆转录病毒预整合复合物之间,wt U3和wt U5 LTR末端之间似乎也存在类似的调控对照。版权所有1999,学术出版社。

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