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逆转录酶。来自人类免疫缺陷病毒的核糖核酸酶H。DNA聚合酶与RNA水解活性的关系。

Reverse transcriptase.RNase H from the human immunodeficiency virus. Relationship of the DNA polymerase and RNA hydrolysis activities.

作者信息

Furfine E S, Reardon J E

机构信息

Division of Experimental Therapy, Wellcome Research Laboratories, Research Triangle Park, North Carolina 27709.

出版信息

J Biol Chem. 1991 Jan 5;266(1):406-12.

PMID:1702425
Abstract

Human immunodeficiency virus reverse transcriptase.RNase H (RT.RNase H) has an RNA hydrolysis specificity which was influenced both by the sequence of the DNA primer-RNA template and by binding of the polymerase active site to the primer 3' terminus. RT.RNase H selectively hydrolyzed the phosphodiester bond between the 15th and 16th ribonucleotide back from the ribonucleotide that is complementary to the primer 3'-terminal deoxynucleotide. The cleavage site for RT.RNase H remained a fixed distance behind the 3'-primer terminus as the polymerase extended the primer. This cleavage was not strongly affected by the position of the DNA primer on the template nor was it affected by reducing the primer length from 40 to 25 nucleotides. These results suggest that the distance between the RNase H and polymerase active sites corresponds to the length of a 15-16-nucleotide DNA-RNA heteroduplex. Since one helical turn is approximately 10 nucleotides, the distance between the active sites is 1.5 helical turns of heteroduplex. Therefore, the two active sites (catalyzing reactions on opposite strands) bind the same side of the RNA-DNA double helix. RT.RNase H also showed some sequence dependence for the site of hydrolysis. This sequence dependence has not been fully characterized. The rate of RT.RNase H cleavage was weakly inhibited by the next coded deoxynucleoside triphosphate following the incorporation of a dideoxynucleotide.

摘要

人类免疫缺陷病毒逆转录酶.RNase H(RT.RNase H)具有RNA水解特异性,其受到DNA引物-RNA模板序列以及聚合酶活性位点与引物3'末端结合的影响。RT.RNase H选择性地水解与引物3'-末端脱氧核苷酸互补的核糖核苷酸后第15和16个核糖核苷酸之间的磷酸二酯键。随着聚合酶延伸引物,RT.RNase H的切割位点在3'-引物末端后方保持固定距离。这种切割不受DNA引物在模板上位置的强烈影响,也不受将引物长度从40个核苷酸减少到25个核苷酸的影响。这些结果表明,RNase H和聚合酶活性位点之间的距离对应于15 - 16个核苷酸的DNA - RNA异源双链体的长度。由于一个螺旋圈大约是10个核苷酸,活性位点之间的距离是异源双链体的1.5个螺旋圈。因此,两个活性位点(催化相反链上的反应)结合在RNA - DNA双螺旋的同一侧。RT.RNase H对水解位点也表现出一定的序列依赖性。这种序列依赖性尚未完全表征。在掺入双脱氧核苷酸后,RT.RNase H的切割速率受到下一个编码的脱氧核苷三磷酸的微弱抑制。

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