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Aminoglycoside binding to the HIV-1 RNA dimerization initiation site: thermodynamics and effect on the kissing-loop to duplex conversion

机译:氨基糖苷与HIV-1 RNA二聚化起始位点的结合:热力学及其对接环到双链体转化的影响

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摘要

Owing to a striking, and most likely fortuitous, structural and sequence similarity with the bacterial 16 S ribosomal A site, the RNA kissing-loop complex formed by the HIV-1 genomic RNA dimerization initiation site (DIS) specifically binds 4,5-disubstituted 2-deoxystreptamine (2-DOS) aminoglycoside antibiotics. We used chemical probing, molecular modeling, isothermal titration calorimetry (ITC) and UV melting to investigate aminoglycoside binding to the DIS loop–loop complex. We showed that apramycin, an aminoglycoside containing a bicyclic moiety, also binds the DIS, but in a different way than 4,5-disubstituted 2-DOS aminoglycosides. The determination of thermodynamic parameters for various aminoglycosides revealed the role of the different rings in the drug–RNA interaction. Surprisingly, we found that the affinity of lividomycin and neomycin for the DIS (Kd ∼ 30 nM) is significantly higher than that obtained in the same experimental conditions for their natural target, the bacterial A site (Kd ∼ 1.6 µM). In good agreement with their respective affinity, aminoglycoside increase the melting temperature of the loop–loop interaction and also block the conversion from kissing-loop complex to extended duplex. Taken together, our data might be useful for selecting new molecules with improved specificity and affinity toward the HIV-1 DIS RNA.
机译:由于与细菌的16 S核糖体A位点具有惊人的,最可能的偶然性,结构和序列相似性,由HIV-1基因组RNA二聚化起始位点(DIS)形成的RNA接环复合物特异性结合4,5-二取代2-deoxystreptamine(2-DOS)氨基糖苷类抗生素。我们使用化学探针,分子建模,等温滴热法(ITC)和UV熔融研究了氨基糖苷与DIS环-环复合物的结合。我们表明,阿普霉素,一种含有双环部分的氨基糖苷,也可以与DIS结合,但其方式不同于4,5-二取代的2-DOS氨基糖苷。各种氨基糖苷的热力学参数的确定揭示了不同环在药物-RNA相互作用中的作用。出乎意料的是,我们发现卵菌素和新霉素对DIS的亲和力(Kd〜30 nM)明显高于在相同实验条件下获得的天然靶标细菌A位点(Kd〜1.6 µM)。与它们各自的亲和力很好地吻合,氨基糖苷提高了环-环相互作用的融化温度,也阻止了从接吻-环复合物到扩展双链体的转化。综上所述,我们的数据可能有助于选择对HIV-1 DIS RNA具有更高特异性和亲和力的新分子。

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