Kaushik N, Chowdhury K, Pandey V N, Modak M J
Department of Biochemistry and Molecular Biology, Graduate School of Biomedical Sciences and New Jersey Medical School, University of Medicine and Dentistry of New Jersey, 185 South Orange Avenue, Newark, New Jersey 07103, USA.
Biochemistry. 2000 May 2;39(17):5155-65. doi: 10.1021/bi992223b.
The YXDD motif is highly conserved in the reverse transcriptase family. The variable X residue is occupied by valine and methionine in MuLV RT and HIV-1 RT, respectively. Previous studies have shown that Tyr 222, the Y residue of the YXDD motif in MuLV RT, constitutes a major component of the fidelity center of the enzyme [Kaushik, N., Singh, K., Alluru, I., and Modak, M. J. (1999) Biochemistry 38, 2617-2627]. In this work, we present evidence that reverse transcriptases containing valine in the "X" position of the YXDD motif generally catalyze DNA synthesis with greater fidelity than those containing methionine or alanine. In the MuLV RT system, the two mutants V223M and V223A exhibited an overall reduced fidelity of DNA synthesis, specifically for RNA-templated reactions. Further analysis revealed that these mutants exhibit a higher efficiency of misinsertion on MS2 RNA than the wild-type enzyme for every mispair tested. However, unlike HIV-1 RT, the insensitivity of the wild-type MuLV RT to all four ddNTPs remained unchanged by mutation of V223 to Met or Ala. A 3D molecular model of the ternary complex of MuLV RT, template primer, and dNTP suggests that Val 223 along with its neighboring Tyr 222 stabilizes the substrate binding pocket via hydrophobic interactions with the dNTP substrate and template-primer.
YXDD基序在逆转录酶家族中高度保守。在莫洛尼氏鼠白血病病毒逆转录酶(MuLV RT)和人类免疫缺陷病毒1型逆转录酶(HIV-1 RT)中,可变的X残基分别由缬氨酸和甲硫氨酸占据。先前的研究表明,MuLV RT中YXDD基序的Y残基酪氨酸222构成了该酶保真度中心的主要成分[考希克,N.,辛格,K.,阿卢鲁,I.,莫达克,M. J.(1999年)《生物化学》38卷,2617 - 2627页]。在这项研究中,我们提供证据表明,在YXDD基序的“X ”位置含有缬氨酸的逆转录酶通常比含有甲硫氨酸或丙氨酸的逆转录酶催化DNA合成时具有更高的保真度。在MuLV RT系统中,两个突变体V223M和V223A在DNA合成方面总体保真度降低,特别是在以RNA为模板的反应中。进一步分析表明,对于所测试的每一种错配情况,这些突变体在MS2 RNA上的错掺入效率都比野生型酶更高。然而,与HIV-1 RT不同,将V223突变为甲硫氨酸或丙氨酸并没有改变野生型MuLV RT对所有四种双脱氧核苷酸三磷酸(ddNTP)的不敏感性。MuLV RT、模板引物和dNTP三元复合物的三维分子模型表明,缬氨酸223与其相邻的酪氨酸222通过与dNTP底物以及模板引物的疏水相互作用稳定了底物结合口袋。