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A polyomavirus peptide binds to the capsid VP1 pore and has potent antiviral activity against BK and JC polyomaviruses

机译:多瘤病毒肽与衣壳VP1孔结合对BK和JC多瘤病毒具有有效的抗病毒活性

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摘要

In pursuit of therapeutics for human polyomaviruses, we identified a peptide derived from the BK polyomavirus (BKV) minor structural proteins VP2/3 that is a potent inhibitor of BKV infection with no observable cellular toxicity. The thirteen-residue peptide binds to major structural protein VP1 with single-digit nanomolar affinity. Alanine-scanning of the peptide identified three key residues, substitution of each of which results in ~1000 fold loss of binding affinity with a concomitant reduction in antiviral activity. Structural studies demonstrate specific binding of the peptide to the pore of pentameric VP1. Cell-based assays demonstrate nanomolar inhibition (EC ) of BKV infection and suggest that the peptide acts early in the viral entry pathway. Homologous peptide exhibits similar binding to JC polyomavirus VP1 and inhibits infection with similar potency to BKV in a model cell line. Lastly, these studies validate targeting the VP1 pore as a novel strategy for the development of anti-polyomavirus agents.
机译:在追求人类多瘤病毒的治疗方法时,我们鉴定了一种源自BK多瘤病毒(BKV)小结构蛋白VP2 / 3的肽,该肽是BKV感染的有效抑制剂,没有可观察到的细胞毒性。十三个残基的肽以一位数纳摩尔亲和力与主要结构蛋白VP1结合。对该肽进行丙氨酸扫描可鉴定出三个关键残基,每个残基的取代都会导致〜1000倍的结合亲和力损失,并同时降低抗病毒活性。结构研究表明,该肽与五聚体VP1的孔具有特异性结合。基于细胞的测定法证明了BKV感染的纳摩尔抑制(EC),表明该肽在病毒进入途径的早期起作用。同源肽表现出与JC多瘤病毒VP1相似的结合,并在模型细胞系中以与BKV相似的效力抑制感染。最后,这些研究证实了靶向VP1孔作为开发抗多瘤病毒药物的新策略。

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