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首页> 外文期刊>Biochemistry >Initiation of minus-strand DNA synthesis by human immunodeficiency virus type 1 reverse transcriptase.
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Initiation of minus-strand DNA synthesis by human immunodeficiency virus type 1 reverse transcriptase.

机译:人类免疫缺陷病毒1型逆转录酶启动负链DNA合成。

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The initiation of (-) strand DNA synthesis by HIV-1 reverse transcriptase was examined using a transient kinetic approach and a physiologically relevant RNA 18-mer/RNA 36-mer primer-template substrate. HIV-1 reverse transcriptase (RT) was found to bind with reasonably high affinity to the RNA/RNA substrate (K(d) = 90 nM), although the affinity for DNA/RNA and DNA/DNA substrates is higher (K(d) approximately 5 nM). A pre-steady-state burst of deoxynucleotide incorporation (k(obsd) = 1.0 s(-)(1)) into the RNA duplex was observed followed by a slower steady-state release of the elongated primer-template product (k(ss) = 0.58 s(-)(1)). The observation of a burst provides evidence that the release of the product is most likely the rate-limiting step in the overall kinetic pathway for the enzymatic reaction during a single deoxynucleotide incorporation event. Furthermore, the release of this product was 5-fold faster than that for elongated DNA/RNA and DNA/DNA products. Single-turnover experiments showed that there is a hyperbolic dependence of the rate of deoxynucleotide incorporation on the concentration of dCTP and demonstrated that the maximum rate of dCTP incorporation (k(pol) = 1.4 s(-)(1)) is 33- and 12-fold slower than the values for DNA/RNA and DNA/DNA primer-template substrates, respectively, while the affinity of dCTP (K(d) = 780 microM) for the HIV-1 RT.RNA/RNA complex is 56- and 71-fold weaker than the affinities for HIV-1 RT.DNA/RNA and HIV-1 RT.DNA/DNA complexes, respectively. Consequently, the overall efficiency of dCTP incorporation (k(pol)/K(d)) into the RNA/RNA substrate is approximately 1800- and 800-fold less than that for DNA/RNA and DNA/DNA substrates, respectively. These findings provide evidence which suggests that the HIV-1 RT.RNA/RNA.dCTP ternary complex exists in a significantly different conformation compared to ternary complexes involving DNA/RNA and DNA/DNA substrates. A model summarizing these results is presented, and implications for the molecular mechanism of initiation of (-) strand DNA synthesis by RT are discussed.
机译:使用瞬时动力学方法和生理相关的RNA 18-mer / RNA 36-mer引物-模板底物检查了由HIV-1逆转录酶引发的(-)链DNA合成的启动。发现HIV-1逆转录酶(RT)与RNA / RNA底物具有相当高的亲和力(K(d)= 90 nM),尽管对DNA / RNA和DNA / DNA底物的亲和力更高(K(d )约5 nM)。观察到脱氧核苷酸掺入(k(obsd)= 1.0 s(-)(1))进入RNA双链体的稳态前爆发,随后细长引物-模板产物(k(ss )= 0.58 s(-)(1))。爆发的观察提供了证据,即在单个脱氧核苷酸掺入事件期间,产物的释放最有可能是酶反应的整个动力学途径中的限速步骤。此外,该产物的释放比伸长的DNA / RNA和DNA / DNA产物的释放快5倍。单周转实验表明脱氧核苷酸掺入速率对dCTP浓度具有双曲线依赖性,并证明dCTP掺入的最大速率(k(pol)= 1.4 s(-)(1))为33-,并且分别比DNA / RNA和DNA / DNA引物模板底物的值慢12倍,而dCTP对HIV-1 RT.RNA / RNA复合物的亲和力(K(d)= 780 microM)为56-分别比对HIV-1 RT.DNA / RNA和HIV-1 RT.DNA / DNA复合物的亲和力弱71倍。因此,dCTP掺入RNA / RNA底物的总效率(k(pol)/ K(d))分别比DNA / RNA和DNA / DNA底物的总效率低约1800-800倍。这些发现提供了证据,表明与涉及DNA / RNA和DNA / DNA底物的三元复合物相比,HIV-1 RT.RNA / RNA.dCTP三元复合物以明显不同的构象存在。提出了总结这些结果的模型,并讨论了通过RT引发(-)链DNA合成的分子机制的意义。

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