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Experimental determination and calculations of redox potential descriptors of compounds directed against retroviral zinc fingers: Implications for rational drug design

机译:针对逆转录病毒锌指的化合物的氧化还原电位描述符的实验测定和计算:合理药物设计的意义

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摘要

A diverse set of electrophilic compounds that react with cysteine thiolates in retroviral nucleocapsid (NC) proteins and abolish virus infectivity has been identified. Although different in chemical composition, these compounds are all oxidizing agents that lead to the ejection of Zn(II) ions bound to conserved structural motifs (zinc fingers) present in retroviral NC proteins. The reactivity of a congeneric series of aromatic disulfides toward the NC protein of the human immunodeficiency virus type 1 (HIV-1), NCp7, has been characterized by HPLC separation of starting reagents from reaction products. We calculated the absolute redox potentials of these compounds in the gas phase and in aqueous solvent, using a density functional theory method and a continuum solvation model. Pulsed polarography experiments were performed and showed a direct correlation between calculated and experimentally determined redox propensities. A dependence between protein reactivity and redox potential for a specific compound was shown: Reaction with NCp7 did not take place below a threshold value of redox potential. This relationship permits the distinction between active and nonactive compounds targeted against NCp7, and provides a theoretical basis for a scale of reactivity with retroviral zinc fingers. Our results indicate that electrophilic agents with adequate thiophilicity to react with retroviral NC fingers can now be designed using known or calculated electrochemical properties. This may assist in the design of antiretroviral compounds with greater specificity for NC protein. Such electrophilic agents can be used in retrovirus inactivation with the intent of preparing a whole-killed virus vaccine formulation that exhibits unaffected surface antigenic properties.
机译:已经确定了与逆转录病毒核衣壳(NC)蛋白中的半胱氨酸硫醇化物反应并消除病毒感染性的多种亲电子化合物。尽管化学成分不同,但这些化合物均为氧化剂,可导致与逆转录病毒NC蛋白中存在的保守结构基序(锌指)结合的Zn(II)离子弹出。同类的芳香族二硫键对人类免疫缺陷病毒1型(HIV-1)NCp7的NC蛋白的反应性已通过从反应产物中分离起始试剂进行了表征。我们使用密度泛函理论方法和连续溶剂化模型计算了这些化合物在气相和水性溶剂中的绝对氧化还原电位。进行了脉冲极谱实验,并显示了计算和实验确定的氧化还原倾向之间的直接相关性。显示了蛋白质反应性与特定化合物的氧化还原电势之间的依赖性:与NCp7的反应未发生在氧化还原电势的阈值以下。这种关系允许针对NCp7的活性和非活性化合物之间的区别,并为逆转录病毒锌指的反应性规模提供了理论基础。我们的结果表明,现在可以使用已知的或计算的电化学性质设计具有足够的亲硫性以与逆转录病毒NC手指反应的亲电子试剂。这可能有助于设计对NC蛋白具有更高特异性的抗逆转录病毒化合物。这样的亲电试剂可用于逆转录病毒灭活,以制备表现出不受影响的表面抗原特性的全杀灭的病毒疫苗制剂。

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