A pan-respiratory antiviral chemotype targeting a transient host multi-protein complex.

IF 4.5 3区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Open Biology Pub Date : 2024-06-01 Epub Date: 2024-06-19 DOI:10.1098/rsob.230363
Maya Michon, Andreas Müller-Schiffmann, Anuradha F Lingappa, Shao Feng Yu, Li Du, Fred Deiter, Sean Broce, Suguna Mallesh, Jackelyn Crabtree, Usha F Lingappa, Amanda Macieik, Lisa Müller, Philipp Niklas Ostermann, Marcel Andrée, Ortwin Adams, Heiner Schaal, Robert J Hogan, Ralph A Tripp, Umesh Appaiah, Sanjeev K Anand, Thomas W Campi, Michael J Ford, Jonathan C Reed, Jim Lin, Olayemi Akintunde, Kiel Copeland, Christine Nichols, Emma Petrouski, Ana R Moreira, I-Ting Jiang, Nicholas DeYarman, Ian Brown, Sharon Lau, Ilana Segal, Danielle Goldsmith, Shi Hong, Vinod Asundi, Erica M Briggs, Ngwe Sin Phyo, Markus Froehlich, Bruce Onisko, Kent Matlack, Debendranath Dey, Jaisri R Lingappa, Dharma M Prasad, Anatoliy Kitaygorodskyy, Dennis Solas, Homer Boushey, John Greenland, Satish Pillai, Michael K Lo, Joel M Montgomery, Christina F Spiropoulou, Carsten Korth, Suganya Selvarajah, Kumar Paulvannan, Vishwanath R Lingappa
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引用次数: 0

Abstract

We present a novel small molecule antiviral chemotype that was identified by an unconventional cell-free protein synthesis and assembly-based phenotypic screen for modulation of viral capsid assembly. Activity of PAV-431, a representative compound from the series, has been validated against infectious viruses in multiple cell culture models for all six families of viruses causing most respiratory diseases in humans. In animals, this chemotype has been demonstrated efficacious for porcine epidemic diarrhoea virus (a coronavirus) and respiratory syncytial virus (a paramyxovirus). PAV-431 is shown to bind to the protein 14-3-3, a known allosteric modulator. However, it only appears to target the small subset of 14-3-3 which is present in a dynamic multi-protein complex whose components include proteins implicated in viral life cycles and in innate immunity. The composition of this target multi-protein complex appears to be modified upon viral infection and largely restored by PAV-431 treatment. An advanced analog, PAV-104, is shown to be selective for the virally modified target, thereby avoiding host toxicity. Our findings suggest a new paradigm for understanding, and drugging, the host-virus interface, which leads to a new clinical therapeutic strategy for treatment of respiratory viral disease.

以瞬时宿主多蛋白复合物为目标的泛呼吸道抗病毒化学型。
我们介绍了一种新型小分子抗病毒化学型,该化学型是通过非传统的无细胞蛋白质合成和组装表型筛选确定的,用于调节病毒的囊膜组装。该系列的代表性化合物 PAV-431 在多种细胞培养模型中针对传染性病毒的活性得到了验证,这些病毒包括引起人类大多数呼吸道疾病的所有六种病毒家族。在动物体内,该化学型已被证明对猪流行性腹泻病毒(一种冠状病毒)和呼吸道合胞病毒(一种副粘病毒)有效。PAV-431 可与蛋白质 14-3-3 结合,14-3-3 是一种已知的异位调节剂。不过,它似乎只针对 14-3-3 的一小部分,而 14-3-3 存在于一个动态的多蛋白复合物中,其成分包括与病毒生命周期和先天免疫有关的蛋白质。这种靶向多蛋白复合物的组成似乎会在病毒感染时发生改变,而通过 PAV-431 的治疗则可在很大程度上恢复。一种先进的类似物 PAV-104 被证明对病毒改变的靶点具有选择性,从而避免了对宿主的毒性。我们的研究结果为了解宿主-病毒界面并对其进行药物治疗提供了一种新的范式,从而为治疗呼吸道病毒性疾病提供了一种新的临床治疗策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Open Biology
Open Biology BIOCHEMISTRY & MOLECULAR BIOLOGY-
CiteScore
10.00
自引率
1.70%
发文量
136
审稿时长
6-12 weeks
期刊介绍: Open Biology is an online journal that welcomes original, high impact research in cell and developmental biology, molecular and structural biology, biochemistry, neuroscience, immunology, microbiology and genetics.
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