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FRET-based assay to screen inhibitors of HIV-1 reverse transcriptase and nucleocapsid protein

机译:基于FRET的检测方法筛选HIV-1逆转录酶和核衣壳蛋白的抑制剂

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摘要

During HIV-1 reverse transcription, the single-stranded RNA genome is converted into proviral double stranded DNA by Reverse Transcriptase (RT) within a reverse transcription complex composed of the genomic RNA and a number of HIV-1 encoded proteins, including the nucleocapsid protein NCp7. Here, we developed a one-step and one-pot RT polymerization assay. In this in vitro assay, RT polymerization is monitored in real-time by Förster resonance energy transfer (FRET) using a commercially available doubly-labeled primer/template DNA. The assay can monitor and quantify RT polymerization activity as well as its promotion by NCp7. Z-factor values as high as 0.89 were obtained, indicating that the assay is suitable for high-throughput drug screening. Using Nevirapine and AZT as prototypical RT inhibitors, reliable IC50 values were obtained from the changes in the RT polymerization kinetics. Interestingly, the assay can also detect NCp7 inhibitors, making it suitable for high-throughput screening of drugs targeting RT, NCp7 or simultaneously, both proteins.
机译:在HIV-1逆转录过程中,逆转录酶(RT)在由基因组RNA和许多HIV-1编码蛋白(包括核衣壳蛋白)组成的逆转录复合物中,将单链RNA基因组通过逆转录酶(RT)转化为原病毒双链DNA。 NCp7。在这里,我们开发了一种一步一步的RT聚合测定。在这种体外测定中,RT聚合是使用市售的双标记引物/模板DNA通过Förster共振能量转移(FRET)进行实时监控的。该测定法可以监测和定量RT聚合活性及其通过NCp7的促进作用。获得的Z因子值高达0.89,表明该测定适用于高通量药物筛选。使用奈韦拉平和AZT作为典型的RT抑制剂,可通过RT聚合动力学的变化获得可靠的IC50值。有趣的是,该测定法还可以检测NCp7抑制剂,使其适用于靶向RT,NCp7或同时靶向这两种蛋白质的药物的高通量筛选。

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