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Mutations in the RNase H Primer Grip Domain of Murine Leukemia Virus Reverse Transcriptase Decrease Efficiency and Accuracy of Plus-Strand DNA Transfer

机译:小鼠白血病病毒逆转录酶RNase H引物的抓地域中的突变降低效率和正链DNA转移的准确性。

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摘要

The RNase H primer grip of human immunodeficiency virus type 1 (HIV-1) reverse transcriptase (RT) contacts the DNA primer strand and positions the template strand near the RNase H active site, influencing RNase H cleavage efficiency and specificity. Sequence alignments show that 6 of the 11 residues that constitute the RNase H primer grip have functional equivalents in murine leukemia virus (MLV) RT. We previously showed that a Y586F substitution in the MLV RNase H primer grip resulted in a 17-fold increase in substitutions within 18 nucleotides of adenine-thymine tracts, which are associated with a bent DNA conformation. To further determine the effects of the MLV RNase H primer grip on replication fidelity and viral replication, we performed additional mutational analysis. Using either β-galactosidase (lacZ) or green fluorescent protein (GFP) reporter genes, we found that S557A, A558V, and Q559L substitutions resulted in statistically significant increases in viral mutation rates, ranging from 2.1- to 3.8-fold. DNA sequencing analysis of nonfluorescent GFP clones indicated that the mutations in RNase H primer grip significantly increased the frequency of deletions between the primer-binding site (PBS) and sequences downstream of the PBS. In addition, quantitative real-time PCR analysis of reverse transcription products revealed that the mutant RTs were substantially inefficient in plus-strand DNA transfer relative to the wild-type control. These results indicate that the MLV RNase H primer grip is an important determinant of in vivo fidelity of DNA synthesis and suggest that the mutant RT was unable to copy through the DNA-RNA junction of the minus-strand DNA and the tRNA because of its bent conformation resulting in error-prone plus-strand DNA transfer.
机译:人类免疫缺陷病毒1型(HIV-1)逆转录酶(RT)的RNase H引物结合力与DNA引物链接触并将模板链置于RNase H活性位点附近,影响RNase H的切割效率和特异性。序列比对显示,构成RNase H引物结合的11个残基中有6个在鼠白血病病毒(MLV)RT中具有功能等同物。我们以前表明,MLV RNase H引物握持中的Y586F取代导致腺嘌呤胸腺嘧啶束18个核苷酸内的取代增加17倍,这与弯曲的DNA构象有关。为了进一步确定MLV RNase H引物抓地力对复制保真度和病毒复制的影响,我们进行了其他突变分析。使用β-半乳糖苷酶(lacZ)或绿色荧光蛋白(GFP)报道基因,我们发现S557A,A558V和Q559L替代导致病毒突变率的统计学显着提高,范围从2.1倍至3.8倍不等。对无荧光GFP克隆的DNA测序分析表明,RNase H引物结合的突变显着增加了引物结合位点(PBS)和PBS下游序列之间缺失的频率。另外,逆转录产物的定量实时PCR分析显示,相对于野生型对照,突变RTs在正链DNA转移中基本上无效。这些结果表明,MLV RNase H引物的握持力是体内DNA合成保真度的重要决定因素,并表明突变体RT由于其弯曲而无法通过负链DNA和tRNA的DNA-RNA连接复制构象导致容易出错的正链DNA转移。

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