category
bioRxiv
date
Mar 13, 2026
slug
status
Published
summary
首次系统解析麻疹病毒m6A表观转录组特征,发现m6A修饰通过调控病毒RNA合成与宿主免疫应答双向影响病毒感染进程,揭示METTL3在病毒复制与免疫逃逸中的双重作用机制。
tags
测序技术
基因编辑
type
Post
📄 原文题目
The m6A Landscapes on the RNA of Mumps Virus and the Host 3 Modulate the Viral Replication and Antiviral Innate Immunity
🔗 原文链接
💡 AI 核心解读
首次系统解析麻疹病毒m6A表观转录组特征,发现m6A修饰通过调控病毒RNA合成与宿主免疫应答双向影响病毒感染进程,揭示METTL3在病毒复制与免疫逃逸中的双重作用机制。
📝 英文原版摘要
N6-methyladenosine (m6A) is the most prevalent internal modification in eukaryotic mRNA and has emerged as a critical regulator of RNA virus infection. However, its role in the mumps virus (MuV), a non-segmented negative-strand (NNS) RNA virus, remains undefined. Here, we comprehensively characterize the m6A epitranscriptome of MuV JL2 strain and its functional impact on viral replication and host innate immunity. Using single-base resolution GLORI-seq, we identified abundant m6A modifications on MuV genomic, antigenomic and messenger RNAs, with uneven distribution and non-canonical motif enrichment. Genetic depletion of METTL3 enhanced viral replication by facilitating RNA synthesis and nucleocapsid encapsidation in Vero-E6 cells. In epithelial A549 and monocytoid THP1-iDC cells, MuV infection triggered robust type I/III interferon and proinflammatory responses by activating multiple pattern recognition receptors in a m6A-dependent manner and induced incomplete iDC maturation characterized by downregulated HLA class II; however, the latter molecule can be partially restored by METTL3-knockdown. The MuV infection reshaped the host m6A landscape with a positive correlation between m6A enrichment and transcripts enhancement of numerous innate immune genes in a cell type-specific manner. Functional analyses revealed that host m6A machinery modulates antiviral signaling, which varies between viral infection and viral RNA-transfection due to the infection-induced host m6A machinery fluctuation. Collectively, our findings demonstrate that m6A serves as a bidirectional regulator during MuV infection, simultaneously constraining viral replication and modulating host immune recognition, thereby highlighting RNA methylation as a pivotal determinant of MuV pathogenesis and a poten
tial target for optimized immunogenicity.
- 作者:NotionNext
- 链接:https://tangly1024.com/article/32248bd6-1f96-81c3-b72c-f652d79308cf
- 声明:本文采用 CC BY-NC-SA 4.0 许可协议,转载请注明出处。
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