金属-超分子复合物对映体选择性靶向猴痘病毒RNA g -四重体并增强对MPXV的免疫应答。

IF 16.3 1区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES National Science Review Pub Date : 2024-10-30 eCollection Date: 2025-01-01 DOI:10.1093/nsr/nwae388
Jie Yang, Geng Qin, Baoying Huang, Hualong Song, Jiewei Sun, Miles Postings, Peter Scott, Chuanqi Zhao, Chunyu Wang, Wenjie Tan, Jinsong Ren, Xiaogang Qu
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引用次数: 0

摘要

Mpox 病毒(MPXV)已成为一种可怕的正痘病毒,对全球公共卫生构成了巨大挑战。了解 MPXV 感染、复制和免疫逃避的调控机制将有助于开发新型抗病毒策略。尽管 G 型四倍体(G4s)参与调节多种病毒的感染和复制过程,但它们在 MPXV 生命周期中的作用在很大程度上仍不为人所知。在这里,我们在 MPXV 中发现了一种高度保守和稳定的 G4,它是病毒免疫显性蛋白表达的正调控元件。此外,通过筛选 42 种光学纯手性金属复合物,我们发现了一对手性螺旋化合物的Λ对映体,它们可以选择性地靶向 mRNA G4,并增强 MPXV A5L 基因编码的 39-kDa 核心蛋白的表达。从机理上讲,RNA G4特异性螺旋酶DHX36通过解开G4s来抑制A5L蛋白的表达。与此相反,MH3 Λ通过特异性靶向 G4 结构增强了 mRNA 的稳定性,从而增加了蛋白质的表达。此外,鉴于39-kDa核心蛋白在激活免疫反应和促进病毒成熟方面的关键作用,MH3 Λ对MPXV G4折叠的调节通过增强免疫反应对MPXV的复制产生了抑制作用。我们的发现强调了 G4 在 MPXV 生命周期中的关键作用,并为开发针对 G4 的抗病毒药物提供了潜在的途径。
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Metallo-supramolecular complexes enantioselectively target monkeypox virus RNA G-quadruplex and bolster immune responses against MPXV.

The Mpox virus (MPXV) has emerged as a formidable orthopoxvirus, posing an immense challenge to global public health. An understanding of the regulatory mechanisms of MPXV infection, replication and immune evasion will benefit the development of novel antiviral strategies. Despite the involvement of G-quadruplexes (G4s) in modulating the infection and replication processes of multiple viruses, their roles in the MPXV life cycle remain largely unknown. Here, we found a highly conservative and stable G4 in MPXV that acts as a positive regulatory element for viral immunodominant protein expression. Furthermore, by screening 42 optically pure chiral metal complexes, we identified the Λ enantiomer of a pair of chiral helical compounds that can selectively target mRNA G4 and enhance expression of the 39-kDa core protein encoded by the MPXV A5L gene. Mechanistically, RNA G4-specific helicase DHX36 inhibits A5L protein expression by unwinding G4s. In contrast, MH3 Λ enhanced mRNA stability by specifically targeting G4 structures and subsequently increased protein expression. Furthermore, given the pivotal role of the 39-kDa core protein in activating immune responses and facilitating virion maturation, modulation of MPXV G4 folding by MH3 Λ exhibited inhibitory effects on MPXV replication through enhancing the immune response. Our findings underscore the critical involvement of G4 in the MPXV life cycle and offer potential avenues for developing antiviral drugs that target G4.

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来源期刊
National Science Review
National Science Review MULTIDISCIPLINARY SCIENCES-
CiteScore
24.10
自引率
1.90%
发文量
249
审稿时长
13 weeks
期刊介绍: National Science Review (NSR; ISSN abbreviation: Natl. Sci. Rev.) is an English-language peer-reviewed multidisciplinary open-access scientific journal published by Oxford University Press under the auspices of the Chinese Academy of Sciences.According to Journal Citation Reports, its 2021 impact factor was 23.178. National Science Review publishes both review articles and perspectives as well as original research in the form of brief communications and research articles.
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