Laboratory of Molecular Biophysics, The Rockefeller University, New York, NY, USA.
Gilead Sciences, Inc., Foster City, CA, USA.
Nature. 2023 Feb;614(7949):781-787. doi: 10.1038/s41586-022-05664-3. Epub 2023 Feb 1.
The SARS-CoV-2 RNA-dependent RNA polymerase coordinates viral RNA synthesis as part of an assembly known as the replication-transcription complex (RTC). Accordingly, the RTC is a target for clinically approved antiviral nucleoside analogues, including remdesivir. Faithful synthesis of viral RNAs by the RTC requires recognition of the correct nucleotide triphosphate (NTP) for incorporation into the nascent RNA. To be effective inhibitors, antiviral nucleoside analogues must compete with the natural NTPs for incorporation. How the SARS-CoV-2 RTC discriminates between the natural NTPs, and how antiviral nucleoside analogues compete, has not been discerned in detail. Here, we use cryogenic-electron microscopy to visualize the RTC bound to each of the natural NTPs in states poised for incorporation. Furthermore, we investigate the RTC with the active metabolite of remdesivir, remdesivir triphosphate (RDV-TP), highlighting the structural basis for the selective incorporation of RDV-TP over its natural counterpart adenosine triphosphate. Our results explain the suite of interactions required for NTP recognition, informing the rational design of antivirals. Our analysis also yields insights into nucleotide recognition by the nsp12 NiRAN (nidovirus RdRp-associated nucleotidyltransferase), an enigmatic catalytic domain essential for viral propagation. The NiRAN selectively binds guanosine triphosphate, strengthening proposals for the role of this domain in the formation of the 5' RNA cap.
SARS-CoV-2 的 RNA 依赖的 RNA 聚合酶作为复制转录复合物(RTC)的一部分协调病毒 RNA 的合成。因此,RTC 是临床批准的抗病毒核苷类似物的靶标,包括瑞德西韦。RTC 忠实地合成病毒 RNA 需要识别正确的核苷酸三磷酸(NTP)以掺入新生 RNA 中。作为有效的抑制剂,抗病毒核苷类似物必须与天然 NTP 竞争掺入。SARS-CoV-2 RTC 如何区分天然 NTP,以及抗病毒核苷类似物如何竞争,尚未详细阐明。在这里,我们使用低温电子显微镜可视化 RTC 与每个天然 NTP 结合的状态,这些状态都处于掺入的准备状态。此外,我们研究了与瑞德西韦的活性代谢物瑞德西韦三磷酸(RDV-TP)结合的 RTC,突出了 RDV-TP 选择性掺入而不是其天然对应物腺苷三磷酸的结构基础。我们的结果解释了 NTP 识别所需的一系列相互作用,为抗病毒药物的合理设计提供了信息。我们的分析还深入了解了 nsp12 NiRAN(nidovirus RdRp 相关核苷酸转移酶)对核苷酸的识别,这是一个神秘的催化结构域,对病毒的传播至关重要。NiRAN 选择性地结合鸟苷三磷酸,这加强了该结构域在 5' RNA 帽形成中的作用的提议。