Ueno T, Mitsuya H
Experimental Retrovirology Section, National Cancer Institute, National Institutes of Health, Bethesda, Maryland 20892, USA.
Biochemistry. 1997 Feb 4;36(5):1092-9. doi: 10.1021/bi962393d.
Employing the single-nucleotide incorporation assay using a heteropolymeric RNA template and DNA primers, we defined enzymatic profiles of recombinant human immunodeficiency virus type 1 (HIV-1) reverse transcriptase (RT) containing a set of five mutations [A62V, V75I, F77L, F116Y, and Q151M] which confers resistance to multiple 2',3'-dideoxynucleosides (ddNs) on HIV-1. RTs containing other drug-resistance-associated mutations were also examined. The K(m) for dNTPs, the kcat, and the kcat/ K(m) ratios of mutant RTs were all comparable to those of wild-type RT (RTwt). The processive primer extension activity of mutant RTs was also comparable to that of RTwt as examined in the presence of saturating concentrations of dNTPs and heparin. Determination of the Ki values toward 5'-triphosphates (TP) of various ddNs [3'-azido-2',3'-dideoxythymidine (AZT), 2',3'-didehydro-2',3'-dideoxythymidine (D4T), 2',3'-dideoxycytidine (ddC), (-)-beta-L-2',3'-dideoxy-3'-thiacytidine (3TC), (-)-beta-L-2',3'-dideoxy-5-fluorocytidine (FddC), 2',3'-dideoxyadenosine (ddA), and 2'-beta-fluoro-2',3'-dideoxyadenosine (FddA)] and 9-(2-phosphonylmethoxyethyl)adenine diphosphate (PMEApp) revealed that RTA62V/V75I/F77L/F116Y/Q151M was insensitive to ddATP, AZTTP, D4TTP, FddATP, and ddCTP, but was sensitive to PMEApp, 3TCTP, and FddCTP. RTK65R was less sensitive to ddATP, FddATP, PMEApp, ddCTP, and 3TCTP, while RTM184V was less sensitive only to 3TCTP and ddCTP. The determination of Ki(ddNTP)/K(m)(dNTP) ratios showed that AZTTP, D4TTP, and ddCTP are, as substrates, as efficient for RTwt as their corresponding dNTPs, that ddATP, PMEApp, and 3TCTP are moderately efficient substrates for RTwt, and that FddATP is the least efficient substrate among ddNTPs examined. The observed cross-resistance of HIV-1 RT to various ddNTPs should reflect the alteration of RT's substrate recognition and should provide insights into the molecular mechanism of RT discrimination of ddNTPs from natural substrates.
利用使用异聚RNA模板和DNA引物的单核苷酸掺入试验,我们确定了含有一组五个突变[A62V、V75I、F77L、F116Y和Q151M]的重组人免疫缺陷病毒1型(HIV-1)逆转录酶(RT)的酶学特征,这些突变赋予HIV-1对多种2',3'-双脱氧核苷(ddNs)的抗性。还检测了含有其他与耐药相关突变的RT。突变型RT对dNTPs的K(m)、kcat以及kcat/K(m)比值均与野生型RT(RTwt)相当。在饱和浓度的dNTPs和肝素存在下检测时,突变型RT的持续引物延伸活性也与RTwt相当。测定各种ddNs[3'-叠氮-2',3'-双脱氧胸苷(AZT)、2',3'-二脱氢-2',3'-双脱氧胸苷(D4T)、2',3'-双脱氧胞苷(ddC)、(-)-β-L-2',3'-双脱氧-3'-硫代胞苷(3TC)、(-)-β-L-2',3'-双脱氧-5-氟胞苷(FddC)、2',3'-双脱氧腺苷(ddA)和2'-β-氟-2',3'-双脱氧腺苷(FddA)]和9-(2-膦酰甲氧基乙基)腺嘌呤二磷酸(PMEApp)的5'-三磷酸(TP)的Ki值,结果显示RTA62V/V75I/F77L/F116Y/Q151M对ddATP、AZTTP、D4TTP、FddATP和ddCTP不敏感,但对PMEApp、3TCTP和FddCTP敏感。RTK65R对ddATP、FddATP、PMEApp、ddCTP和3TCTP的敏感性较低,而RTM184V仅对3TCTP和ddCTP的敏感性较低。Ki(ddNTP)/K(m)(dNTP)比值的测定表明,AZTTP、D4TTP和ddCTP作为底物,对RTwt的效率与它们相应的dNTPs相同;ddATP、PMEApp和3TCTP是RTwt的中等效率底物;FddATP是所检测的ddNTPs中效率最低的底物。观察到的HIV-1 RT对各种ddNTPs的交叉抗性应反映了RT底物识别的改变,并应为深入了解RT区分ddNTPs与天然底物的分子机制提供线索。