以原子分辨率描述广谱抗病毒药物贝诺福韦的活化级联。

IF 9.8 1区 生物学 Q1 Agricultural and Biological Sciences PLoS Biology Pub Date : 2024-08-27 eCollection Date: 2024-08-01 DOI:10.1371/journal.pbio.3002743
Aurélie Chazot, Claire Zimberger, Mikael Feracci, Adel Moussa, Steven Good, Jean-Pierre Sommadossi, Karine Alvarez, François Ferron, Bruno Canard
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引用次数: 0

摘要

Bemnifosbuvir (AT-527) 和 AT-752 是鸟苷类似物,目前正在针对几种 RNA 病毒进行临床试验。在这里,我们发现这两种药物需要最少 5 种细胞酶才能活化成它们共同的 5'- 三磷酸 AT-9010,而且反应顺序是强制性的。AT-9010 能选择性地抑制重要的病毒酶,因此具有抗病毒效力。原子分辨率的功能和结构数据破译了与其代谢活化相适应的 N6-嘌呤脱氨过程。人类组氨酸三核苷酸结合蛋白1、腺苷脱氨酶样蛋白1、鸟苷酸激酶1和核苷二磷酸激酶的晶体结构与AT-9010的同源前体的分辨率分别为2.09、2.44、1.76和1.9埃,阐明了从口服贝诺布韦到AT-9010的激活途径,指出了激活途径上关键的药物-蛋白接触。我们的工作为整合抗病毒核苷酸类似物的设计提供了一个框架,使我们能够面对与5'-三磷酸组装线上的活化酶相关的要求和限制。
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The activation cascade of the broad-spectrum antiviral bemnifosbuvir characterized at atomic resolution.

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 Å 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.

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来源期刊
PLoS Biology
PLoS Biology BIOCHEMISTRY & MOLECULAR BIOLOGY-BIOLOGY
CiteScore
15.40
自引率
2.00%
发文量
359
审稿时长
3-8 weeks
期刊介绍: PLOS Biology is the flagship journal of the Public Library of Science (PLOS) and focuses on publishing groundbreaking and relevant research in all areas of biological science. The journal features works at various scales, ranging from molecules to ecosystems, and also encourages interdisciplinary studies. PLOS Biology publishes articles that demonstrate exceptional significance, originality, and relevance, with a high standard of scientific rigor in methodology, reporting, and conclusions. The journal aims to advance science and serve the research community by transforming research communication to align with the research process. It offers evolving article types and policies that empower authors to share the complete story behind their scientific findings with a diverse global audience of researchers, educators, policymakers, patient advocacy groups, and the general public. PLOS Biology, along with other PLOS journals, is widely indexed by major services such as Crossref, Dimensions, DOAJ, Google Scholar, PubMed, PubMed Central, Scopus, and Web of Science. Additionally, PLOS Biology is indexed by various other services including AGRICOLA, Biological Abstracts, BIOSYS Previews, CABI CAB Abstracts, CABI Global Health, CAPES, CAS, CNKI, Embase, Journal Guide, MEDLINE, and Zoological Record, ensuring that the research content is easily accessible and discoverable by a wide range of audiences.
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