Bemnifosbuvir (AT-527) and AT-752 are guanosine analogues currently in clinical trials against several RNA viruses. Here, we show that these drugs require a minimal set of 5 cellular enzymes for activation to their common 5'-triphosphate AT-9010, with an obligate order of reactions. AT-9010 selectively inhibits essential viral enzymes, accounting for antiviral potency. Functional and structural data at atomic resolution decipher N6-purine deamination compatible with its metabolic activation. Crystal structures of human histidine triad nucleotide binding protein 1, adenosine deaminase-like protein 1, guanylate kinase 1, and nucleoside diphosphate kinase at 2.09, 2.44, 1.76, and 1.9 Ã resolution, respectively, with cognate precursors of AT-9010 illuminate the activation pathway from the orally available bemnifosbuvir to AT-9010, pointing to key drug-protein contacts along the activation pathway. Our work provides a framework to integrate the design of antiviral nucleotide analogues, confronting requirements and constraints associated with activation enzymes along the 5'-triphosphate assembly line.
The activation cascade of the broad-spectrum antiviral bemnifosbuvir characterized at atomic resolution.
以原子分辨率表征广谱抗病毒药物贝尼福布韦的激活级联反应
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作者:Chazot Aurélie, Zimberger Claire, Feracci Mikael, Moussa Adel, Good Steven, Sommadossi Jean-Pierre, Alvarez Karine, Ferron François, Canard Bruno
| 期刊: | PLoS Biology | 影响因子: | 7.200 |
| 时间: | 2024 | 起止号: | 2024 Aug 27; 22(8):e3002743 |
| doi: | 10.1371/journal.pbio.3002743 | 种属: | Viral |
| 研究方向: | 其它 | ||
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