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禽逆转录病毒U3和U5 DNA反向重复序列。非对称核苷酸在纯化病毒粒子和细菌重组整合酶促进全位点整合中的作用。

Avian retrovirus U3 and U5 DNA inverted repeats. Role Of nonsymmetrical nucleotides in promoting full-site integration by purified virion and bacterial recombinant integrases.

作者信息

Vora A C, Chiu R, McCord M, Goodarzi G, Stahl S J, Mueser T C, Hyde C C, Grandgenett D P

机构信息

St. Louis University Health Sciences Center, Institute for Molecular Virology, St. Louis, Missouri 63110, USA.

出版信息

J Biol Chem. 1997 Sep 19;272(38):23938-45. doi: 10.1074/jbc.272.38.23938.

Abstract

The U3 and U5 termini of linear retrovirus DNA contain imperfect inverted repeats that are necessary for the concerted insertion of the termini into the host chromosome by viral integrase. Avian myeloblastosis virus integrase can efficiently insert the termini of retrovirus-like DNA donor substrates (480 base pairs) by a concerted mechanism (full-site reaction) into circular target DNA in vitro. The specific activities of virion-derived avian myeloblastosis virus integrase and bacterial recombinant Rous sarcoma virus (Prague A strain) integrase (approximately 50 nM or less) appear similar upon catalyzing the full-site reaction with 3'-OH recessed wild type or mutant donor substrates. We examined the role of the three nonsymmetrical nucleotides located at the 5th, 8th, and 12th positions in the U3 and U5 15-base pair inverted repeats for their ability to modify the full-site and simultaneously, the half-site strand transfer reactions. Our data suggest that the nucleotide at the 5th position appears to be responsible for the 3-5-fold preference for wild type U3 ends over wild type U5 ends by integrase for concerted integration. Additional mutations at the 5th or 6th position, or both, of U3 or U5 termini significantly increased (approximately 3 fold) the full-site reactions of mutant donors over wild type donors.

摘要

线性逆转录病毒DNA的U3和U5末端含有不完全反向重复序列,这些序列对于病毒整合酶将末端协同插入宿主染色体是必需的。禽成髓细胞瘤病毒整合酶能够通过协同机制(全位点反应)将逆转录病毒样DNA供体底物(480个碱基对)的末端高效插入体外的环状靶DNA中。在用3'-OH凹陷的野生型或突变供体底物催化全位点反应时,病毒衍生的禽成髓细胞瘤病毒整合酶和细菌重组劳斯肉瘤病毒(布拉格A株)整合酶(约50 nM或更低)的比活性似乎相似。我们研究了位于U3和U5 15碱基对反向重复序列第5、8和12位的三个非对称核苷酸在修饰全位点以及同时修饰半位点链转移反应方面的作用。我们的数据表明,第5位的核苷酸似乎是整合酶在协同整合时对野生型U3末端比对野生型U5末端有3至5倍偏好的原因。U3或U5末端第5位或第6位或两者的额外突变显著增加了(约3倍)突变供体相对于野生型供体的全位点反应。

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