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Effects of HIV Q151M-associated multi-drug resistance mutations on the activities of (-)-beta-D-1',3'-dioxolan guanine.

机译:HIV Q151M相关的多重耐药性突变对(-)-beta-D-1',3'-dioxolan鸟嘌呤活性的影响。

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The multi-drug resistance HIV-1 genotype A62V/V75I/F77L/F116Y/Q151M is associated with resistance to many nucleoside reverse transcriptase inhibitors including AZT, ddI, ddC, d4T, abacavir, and 3TC. In this study, we evaluated the antiviral activity of (-)-beta-D-1',3'-dioxolan guanine (DXG) towards mutant HIV-1 containing V75I/F77L/F116Y/Q151M (V75Icomplex) and A62V/V75I/F77L/F116Y/Q151M (A62Vcomplex) in MT-2 cells. We further investigated the mechanism of resistance by studying the incorporation of DXG 5'-triphosphate (DXG-TP) during DNA synthesis by mutant enzymes containing single mutations at Q151M or A62V, and the V75Icomplex and A62Vcomplex using pre-steady state kinetic analysis. Our studies showed that mutant virus containing V75Icomplex and A62Vcomplex were both more than 23-fold resistant to DXG, and this correlated with the 68- and 20-fold resistance changes observed in the enzymatic assay. Compared to the wild-type enzyme, DXG-TP was incorporated 39- and 21-fold less efficiently by the mutant enzyme containing V75Icomplex and A62Vcomplex, mainly due to decreases in the rate of incorporation. The A62V mutation significantly increased the rate of incorporation (k(pol)) for both dGTP (3-fold) and DXG-TP (7.9-fold), while the binding affinity of A62V HIV-1 RT for DXG-TP was decreased 14-fold. At the enzyme level, the addition of the A62V mutation to V75I/F77L/F116Y/Q151M moderately (3.4-fold) reversed the resistance to DXG-TP.
机译:HIV-1基因多药耐药性A62V / V75I / F77L / F116Y / Q151M与许多核苷逆转录酶抑制剂(包括AZT,ddI,ddC,d4T,abacavir和3TC)的耐药性相关。在这项研究中,我们评估了(-)-β-D-1',3'-二氧戊环鸟嘌呤(DXG)对含有V75I / F77L / F116Y / Q151M(V75Icomplex)和A62V / V75I /的突变HIV-1的抗病毒活性MT-2细胞中的F77L / F116Y / Q151M(A62Vcomplex)。我们通过使用稳态前动力学分析研究了在Q151M或A62V处含有单个突变的突变酶和V75Icomplex和A62Vcomplex的DNA合成过程中DXG 5'-三磷酸(DXG-TP)的掺入,从而进一步研究了抗药性的机制。我们的研究表明,含有V75Icomplex和A62Vcomplex的突变病毒对DXG的抵抗力均超过23倍,这与酶法检测到的68倍和20倍抵抗力变化相关。与野生型酶相比,DXG-TP通过含有V75Icomplex和A62Vcomplex的突变酶的掺入效率降低了39倍和21倍,这主要是由于掺入率降低所致。 A62V突变显着提高了dGTP(3倍)和DXG-TP(7.9倍)的掺入率(k(pol)),而A62V HIV-1 RT对DXG-TP的结合亲和力降低了14 -折。在酶水平上,向V75I / F77L / F116Y / Q151M添加A62V突变适度(3.4倍)可逆转对DXG-TP的抗性。

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