Svarovskaia E S, Delviks K A, Hwang C K, Pathak V K
Department of Biochemistry, West Virginia University, Morgantown, West Virginia 26506, USA.
J Virol. 2000 Aug;74(15):7171-8. doi: 10.1128/jvi.74.15.7171-7178.2000.
Retroviral reverse transcriptases (RTs) frequently switch templates within the same RNA or between copackaged viral RNAs to generate mutations and recombination. To identify structural elements of murine leukemia virus RT important for template switching, we developed an in vivo assay in which RT template switching within direct repeats functionally reconstituted the green fluorescent protein gene. We quantified the effect of mutations in the YXDD motif, the deoxynucleoside triphosphate binding site, the thumb domain, and the RNase H domain of RT and hydroxyurea treatment on the frequencies of template switching. Hydroxyurea treatment and some mutations in RT increased the frequency of RT template switching up to fivefold, while all of the mutations tested in the RNase H domain decreased the frequency of template switching by twofold. Based on these results, we propose a dynamic copy choice model in which both the rate of DNA polymerization and the rate of RNA degradation influence the frequency of RT template switching.
逆转录病毒逆转录酶(RTs)经常在同一RNA内或共包装的病毒RNA之间切换模板,以产生突变和重组。为了确定对模板切换至关重要的鼠白血病病毒RT的结构元件,我们开发了一种体内检测方法,其中直接重复序列内的RT模板切换在功能上重建了绿色荧光蛋白基因。我们量化了RT的YXDD基序、脱氧核苷三磷酸结合位点、拇指结构域和RNase H结构域中的突变以及羟基脲处理对模板切换频率的影响。羟基脲处理和RT中的一些突变使RT模板切换频率增加了五倍,而在RNase H结构域中测试的所有突变使模板切换频率降低了两倍。基于这些结果,我们提出了一个动态拷贝选择模型,其中DNA聚合速率和RNA降解速率都影响RT模板切换的频率。