Centro de Biología Molecular 'Severo Ochoa' Consejo Superior de Investigaciones Científicas - Universidad Autónoma de Madrid, 28049 Madrid, Spain.
Biochem J. 2011 Jun 15;436(3):599-607. doi: 10.1042/BJ20101852.
Wild-type HIV-1 group O RT (reverse transcriptase) shows increased thermostability in comparison with HIV-1 group M subtype B RT and MLV (murine leukaemia virus) RT. However, its utility in the amplification of RNA targets is limited by the reduced accuracy of lentiviral RTs compared with oncoretroviral RTs (i.e. MLV RT). The effects of the mutations K65R, R78A and K65R/V75I on the fidelity of HIV-1 group O RTs were studied using gel-based and M13mp2 lacZ forward-mutation fidelity assays. Forward-mutation assays demonstrated that mutant RTs K65R, R78A and K65R/V75I showed >9-fold increased accuracy in comparison with the wild-type enzyme and were approximately two times more faithful than the MLV RT. Compared with MLV RT, all of the tested HIV-1 group O RT variants showed decreased frameshift fidelity. However, K65R RT showed a higher tendency to introduce one-nucleotide deletions in comparison with other HIV-1 group O RT variants. R78A had a destabilizing effect on the RT, either in the presence or absence of V75I. At temperatures above 52 °C, K65R and K65R/V75I retained similar levels of DNA polymerase activity to the wild-type HIV-1 group O RT, but were more efficient than HIV-1 group M subtype B and MLV RTs. K65R, K65R/V75I and R78A RTs showed decreased misinsertion and mispair extension fidelity in comparison with the wild-type enzyme for most base pairs studied. These assays revealed that nucleotide selection is mainly governed by kpol (pol is polymerization) in the case of K65R, whereas both kpol and Kd affect nucleotide discrimination in the case of K65R/V75I.
野生型 HIV-1 组 O RT(逆转录酶)与 HIV-1 组 M 亚型 B RT 和 MLV(鼠白血病病毒) RT 相比,表现出更高的热稳定性。然而,与正链逆转录病毒 RT(即 MLV RT)相比,其在 RNA 靶标扩增方面的用途受到慢病毒 RT 准确性降低的限制。通过凝胶基和 M13mp2 lacZ 正向突变保真度测定,研究了 K65R、R78A 和 K65R/V75I 突变对 HIV-1 组 O RT 保真度的影响。正向突变测定表明,与野生型酶相比,突变型 RT K65R、R78A 和 K65R/V75I 的准确性提高了 9 倍以上,比 MLV RT 更准确。与 MLV RT 相比,所有测试的 HIV-1 组 O RT 变体的框架移位保真度都降低了。然而,与其他 HIV-1 组 O RT 变体相比,K65R RT 更倾向于引入一个核苷酸缺失。R78A 对 RT 具有不稳定性作用,无论是在存在还是不存在 V75I 的情况下。在 52°C 以上的温度下,K65R 和 K65R/V75I 保持与野生型 HIV-1 组 O RT 相似的 DNA 聚合酶活性水平,但比 HIV-1 组 M 亚型 B 和 MLV RT 更有效。与野生型酶相比,K65R、K65R/V75I 和 R78A RT 对大多数碱基对的错误插入和错误配对延伸保真度降低。这些测定表明,在 K65R 的情况下,核苷酸选择主要由 kpol(聚合酶)控制,而在 K65R/V75I 的情况下,kpol 和 Kd 都影响核苷酸的区分。