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Pre-steady State Kinetic Analysis of HIV-1 Reverse Transcriptase for Non-canonical Ribonucleoside Triphosphate Incorporation and DNA Synthesis from Ribonucleoside-containing DNA Template

机译:用于非典型核糖核苷三磷酸结合和从含核糖核苷的DNA模板合成DNA的HIV-1逆转录酶的稳态前动力学分析。

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摘要

Non-dividing macrophages maintain extremely low cellular deoxyribonucleotide triphosphate (dNTP) levels, but high ribonucleotide triphosphate (rNTP) concentrations. The disparate nucleotide pools kinetically forces Human Immunodeficiency Virus 1 (HIV-1) reverse transcriptase (RT) to incorporate non-canonical rNTPs during reverse transcription. HIV-1 RT pauses near ribonucleoside monophosphates (rNMPs) embedded in the template DNA, which has previously been shown to enhance mismatch extension. Here, pre-steady state kinetic analysis shows rNTP binding affinity (Kd) of HIV-1 RT for non-canonical rNTPs was 1.4- to 43-fold lower, and the rNTP rate of incorporation (kpol) was 15- to 1551-fold slower than for dNTPs. This suggests that RT is more selective for incorporation of dNTPs rather than rNTPs. HIV-1 RT selectivity for dNTP versus rNTP is the lowest for ATP, implying that HIV-1 RT preferentially incorporates ATP when dATP concentration is limited. We observed that incorporation of a dNTP occurring one nucleotide before an embedded rNMP in the template had a 29-fold greater Kd and a 20-fold slower kpol as compared to the same template containing dNMP. This reduced the overall dNTP incorporation efficiency of HIV-1 RT by 581-fold. Finally, the RT mutant Y115F displayed lower discrimination against rNTPs due to its increase in binding affinity for non-canonical rNTPs. Overall, these kinetic results demonstrate that HIV-1 RT utilizes both substrate binding and a conformational change during: 1) enzymatic discrimination of non-canonical rNTPs from dNTPs and 2) during dNTP primer extension with DNA templates containing embedded rNMP.
机译:非分裂巨噬细胞维持极低的细胞脱氧核糖核苷酸三磷酸(dNTP)水平,但保持高核糖核苷酸三磷酸(rNTP)浓度。不同的核苷酸池在动力学上迫使人类免疫缺陷病毒1(HIV-1)逆转录酶(RT)在逆转录过程中掺入非规范性rNTP。 HIV-1 RT在嵌入模板DNA的核糖核苷单磷酸(rNMP)附近停顿,先前已证明可增强错配延伸。在这里,稳态前动力学分析显示,HIV-1 RT对非经典rNTP的rNTP结合亲和力(Kd)低1.4至43倍,rNTP掺入率(kpol)为15至1551倍比dNTP慢。这表明RT对掺入dNTP而不是rNTP更具选择性。 dNTP相对于rNTP的HIV-1 RT选择性是ATP最低的,这意味着当dATP浓度受到限制时,HIV-1 RT优先掺入ATP。我们观察到,与包含dNMP的相同模板相比,在模板中的嵌入rNMP之前一个核苷酸处出现的dNTP掺入的Kd值大29倍,kpol值慢20倍。这使HIV-1 RT的总体dNTP掺入效率降低了581倍。最后,RT突变体Y115F由于对非经典rNTPs的结合亲和力增加,因此对rNTPs的分辨力较低。总体而言,这些动力学结果表明,HIV-1 RT在以下过程中同时利用了底物结合和构象变化:1)从dNTPs中非常规rNTPs的酶促鉴别,以及2)在dNTP引物延伸过程中使用包含嵌入式rNMP的DNA模板。

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