학술논문

Restriction factor compendium for influenza A virus reveals a mechanism for evasion of autophagy
Document Type
article
Source
Nature Microbiology. 6(10)
Subject
Microbiology
Biochemistry and Cell Biology
Biological Sciences
Biodefense
Vaccine Related
Prevention
Influenza
Emerging Infectious Diseases
Infectious Diseases
Pneumonia & Influenza
2.2 Factors relating to the physical environment
2.1 Biological and endogenous factors
Aetiology
Infection
Antiviral Agents
Autophagy
GTPase-Activating Proteins
Host-Pathogen Interactions
Humans
Immune Evasion
Influenza A virus
Lysosomes
Protein Binding
Viral Matrix Proteins
Virus Replication
rab GTP-Binding Proteins
rab7 GTP-Binding Proteins
Medical Microbiology
Language
Abstract
The fate of influenza A virus (IAV) infection in the host cell depends on the balance between cellular defence mechanisms and viral evasion strategies. To illuminate the landscape of IAV cellular restriction, we generated and integrated global genetic loss-of-function screens with transcriptomics and proteomics data. Our multi-omics analysis revealed a subset of both IFN-dependent and independent cellular defence mechanisms that inhibit IAV replication. Amongst these, the autophagy regulator TBC1 domain family member 5 (TBC1D5), which binds Rab7 to enable fusion of autophagosomes and lysosomes, was found to control IAV replication in vitro and in vivo and to promote lysosomal targeting of IAV M2 protein. Notably, IAV M2 was observed to abrogate TBC1D5-Rab7 binding through a physical interaction with TBC1D5 via its cytoplasmic tail. Our results provide evidence for the molecular mechanism utilised by IAV M2 protein to escape lysosomal degradation and traffic to the cell membrane, where it supports IAV budding and growth.