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负责病毒对核苷类抑制剂齐多夫定和拉米夫定耐药的HIV-1逆转录酶突变体的单步动力学

Single-step kinetics of HIV-1 reverse transcriptase mutants responsible for virus resistance to nucleoside inhibitors zidovudine and 3-TC.

作者信息

Krebs R, Immendörfer U, Thrall S H, Wöhrl B M, Goody R S

机构信息

Max Planck Institut für molekulare Physiologie, Abteilung Physikalische Biochemie, Rheinlanddamm 201, D-44139 Dortmund, Germany.

出版信息

Biochemistry. 1997 Aug 19;36(33):10292-300. doi: 10.1021/bi970512z.

Abstract

Two mutants of HIV-1 reverse transcriptase (RT) associated with high-level resistance of the virus to AZT (RT-AZT: D67N, K70R, T215Y, K219Q, and M41L) or 3-TC (RT-3TC: M184V) were expressed in Escherichia coli and purified. None of these mutants showed significant changes in the affinity and kinetics of binding to a DNA/DNA primer/template. RT-AZT was investigated in detail with respect to its kinetics of incorporation of nucleotides. No change in the relative rates of TMP and AZTMP incorporation could be detected for RT-AZT with respect to wild type RT. These results imply that there is no increased discrimination against AZTTP in the mutant. This was found for DNA/DNA and DNA/RNA primer/template. Additionally, rapid kinetics of incorporation of 3'-amino-3'-deoxythymidine 5'-monophosphate (a possible metabolite of AZT) were investigated and compared with TMP incorporation, but no difference in its relative rates of incorporation between wild type RT and RT-AZT was detected. In contrast, the already very slow rate of incorporation of 3-TCMP seen with wild type enzyme was drastically reduced (by a factor of 23 and 36 with DNA/DNA primer/template and DNA/RNA primer/template, respectively) for RT-3TC, showing a clear correlation between in vitro and in vivo effects. The affinity of 3-TCTP to the RT-3TC-primer/template complex was not affected by the mutation M184V. A 1.6-fold cross-resistance to ddATP, the converted form of the prodrug ddI, could also be shown for RT-3TC, but no cross-resistance to ddCTP was detected. Additionally, rapid kinetics of AZTMP incorporation by RT-3TC were investigated. There was an indication of a slightly higher rate of incorporation of AZTMP by RT-3TC than wild type RT.

摘要

两种与HIV-1逆转录酶(RT)相关的突变体,它们分别使病毒对齐多夫定(AZT)产生高水平耐药性(RT-AZT:D67N、K70R、T215Y、K219Q和M41L)或对拉米夫定(3-TC)产生高水平耐药性(RT-3TC:M184V),在大肠杆菌中表达并纯化。这些突变体中没有一个在与DNA/DNA引物/模板结合的亲和力和动力学方面表现出显著变化。对RT-AZT的核苷酸掺入动力学进行了详细研究。与野生型RT相比,未检测到RT-AZT在TMP和AZTMP掺入相对速率上的变化。这些结果表明,突变体对AZTTP没有增加的识别差异。在DNA/DNA和DNA/RNA引物/模板中均发现了这一点。此外,研究了3'-氨基-3'-脱氧胸苷5'-单磷酸(AZT的一种可能代谢产物)的快速掺入动力学,并与TMP掺入进行了比较,但未检测到野生型RT和RT-AZT在其掺入相对速率上的差异。相比之下,野生型酶中已非常缓慢的3-TCMP掺入速率在RT-3TC中大幅降低(分别使DNA/DNA引物/模板和DNA/RNA引物/模板的掺入速率降低23倍和36倍),显示出体外和体内效应之间的明显相关性。3-TCTP与RT-3TC-引物/模板复合物的亲和力不受M184V突变的影响。RT-3TC对前药双脱氧肌苷(ddI)的转化形式双脱氧腺苷三磷酸(ddATP)也表现出1.6倍的交叉耐药性,但未检测到对双脱氧胞苷三磷酸(ddCTP)的交叉耐药性。此外,研究了RT-3TC掺入AZTMP的快速动力学。有迹象表明,RT-3TC掺入AZTMP的速率略高于野生型RT。

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