The dynamic proteome of influenza A virus infection identifies M segment splicing as a host range determinant

甲型流感病毒感染的动态蛋白质组确定 M 片段剪接是宿主范围决定因素

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作者:Boris Bogdanow, Xi Wang, Katrin Eichelbaum, Anne Sadewasser, Immanuel Husic, Katharina Paki, Matthias Budt, Martha Hergeselle, Barbara Vetter, Jingyi Hou, Wei Chen, Lüder Wiebusch, Irmtraud M Meyer, Thorsten Wolff, Matthias Selbach

Abstract

Pandemic influenza A virus (IAV) outbreaks occur when strains from animal reservoirs acquire the ability to infect and spread among humans. The molecular basis of this species barrier is incompletely understood. Here we combine metabolic pulse labeling and quantitative proteomics to monitor protein synthesis upon infection of human cells with a human- and a bird-adapted IAV strain and observe striking differences in viral protein synthesis. Most importantly, the matrix protein M1 is inefficiently produced by the bird-adapted strain. We show that impaired production of M1 from bird-adapted strains is caused by increased splicing of the M segment RNA to alternative isoforms. Strain-specific M segment splicing is controlled by the 3' splice site and functionally important for permissive infection. In silico and biochemical evidence shows that avian-adapted M segments have evolved different conserved RNA structure features than human-adapted sequences. Thus, we identify M segment RNA splicing as a viral host range determinant.

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