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Processing sites in the human immunodeficiency virus type 1 (HIV-1) Gag-Pro-Pol precursor are cleaved by the viral protease at different rates

机译:人类免疫缺陷病毒1型(HIV-1)Gag-Pro-Pol前体中的加工位点被病毒蛋白酶以不同速率切割

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We have examined the kinetics of processing of the HIV-1 Gag-Pro-Pol precursor in an in vitro assay with mature protease added in trans. The processing sites were cleaved at different rates to produce distinct intermediates. The initial cleavage occurred at the p2/NC site. Intermediate cleavages occurred at similar rates at the MA/CA and RT/IN sites, and to a lesser extent at sites upstream of RT. Late cleavages occurred at the sites flanking the protease (PR) domain, suggesting sequestering of these sites. We observed paired intermediates indicative of half- cleavage of RT/RH site, suggesting that the RT domain in Gag-Pro-Pol was in a dimeric form under these assay conditions. These results clarify our understanding of the processing kinetics of the Gag-Pro-Pol precursor and suggest regulated cleavage. Our results further suggest that early dimerization of the PR and RT domains may serve as a regulatory element to influence the kinetics of processing within the Pol domain.
机译:我们已经在体外测定中以反式添加成熟蛋白酶的方式检测了HIV-1 Gag-Pro-Pol前体的加工动力学。加工位点以不同的速率裂解以产生不同的中间体。最初的切割发生在p2 / NC位点。中间裂解在MA / CA和RT / IN位点发生的速率相似,而在RT上游位点的裂解程度较小。晚期切割发生在蛋白酶(PR)结构域侧翼的位点,表明这些位点被隔离。我们观察到配对的中间体指示RT / RH位点被半切割,这表明在这些测定条件下,Gag-Pro-Pol中的RT结构域为二聚体形式。这些结果阐明了我们对Gag-Pro-Pol前体的加工动力学的理解,并提出了调控的裂解。我们的结果进一步表明,PR和RT域的早期二聚化可作为调节元件,以影响Pol域内的加工动力学。

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