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Reduced dNTP Binding Affinity of 3TC-resistant M184I HIV-1 Reverse Transcriptase Variants Responsible for Viral Infection Failure in Macrophage*

机译:降低了3TC抗性M184I HIV-1反向的dNTP结合亲和力 转录酶变异负责病毒感染失败。 巨噬细胞*

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摘要

We characterized HIV-1 reverse transcriptase (RT) variants either with or without the (-)-2′,3′-deoxy-3′-thiacytidine-resistant M184I mutation isolated from a single HIV-1 infected patient. First, unlike variants with wild-type M184, M184I RT variants displayed significantly reduced DNA polymerase activity at low dNTP concentrations, which is indicative of reduced dNTP binding affinity. Second, the M184I variant displayed a ∼10- to 13-fold reduction in dNTP binding affinity, compared with the Met-184 variant. However, the kpol values of these two RTs were similar. Third, unlike HIV-1 vectors with wild-type RT, the HIV-1 vector harboring M184I RT failed to transduce cell types containing low dNTP concentrations, such as human macrophage, likely due to the reduced DNA polymerization activity of the M184I RT under low cellular dNTP concentration conditions. Finally, we compared the binary complex structures of wild-type and M184I RTs. The Ile mutation at position 184 with a longer and more rigid β-branched side chain, which was previously known to alter the RT-template interaction, also appears to deform the shape of the dNTP binding pocket. This can restrict ground state dNTP binding and lead to inefficient DNA synthesis particularly at low dNTP concentrations, ultimately contributing to viral replication failure in macrophage and instability in vivo of the M184I mutation.
机译:我们表征了HIV-1逆转录酶(RT)变异体,具有或不具有从单个HIV-1感染患者中分离的(-)-2',3'-脱氧-3'-硫代胞苷抗性M184I突变。首先,与具有野生型M184的变体不同,M184I RT变体在低dNTP浓度下显示出显着降低的DNA聚合酶活性,这表明dNTP结合亲和力降低。其次,与Met-184变体相比,M184I变体的dNTP结合亲和力降低了约10至13倍。但是,这两个RT的kpol值相似。第三,与带有野生型RT的HIV-1载体不同,带有M184I RT的HIV-1载体无法转导包含低dNTP浓度的细胞类型,例如人巨噬细胞,这可能是由于M184I RT在较低温度下DNA聚合活性降低所致。细胞dNTP浓度条件。最后,我们比较了野生型和M184I RT的二元复杂结构。位置184处具有更长且更刚性的β支化侧链的Ile突变(以前已知会改变RT模板相互作用),也似乎使dNTP结合袋的形状变形。这会限制基态dNTP的结合并导致DNA合成效率低下,尤其是在低dNTP浓度下,最终导致巨噬细胞中的病毒复制失败以及M184I突变在体内的不稳定。

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