
pmid: 31327526
Antibacterial autophagy (xenophagy) is an important host defense, but how it is initiated is unclear. Here, we performed a bacterial transposon screen and identified a T3SS effector SopF that potently blocked Salmonella autophagy. SopF was a general xenophagy inhibitor without affecting canonical autophagy. S. Typhimurium ΔsopF resembled S. flexneri ΔvirAΔicsB with the majority of intracellular bacteria targeted by autophagy, permitting a CRISPR screen that identified host V-ATPase as an essential factor. Upon bacteria-caused vacuolar damage, the V-ATPase recruited ATG16L1 onto bacteria-containing vacuole, which was blocked by SopF. Mammalian ATG16L1 bears a WD40 domain required for interacting with the V-ATPase. Inhibiting autophagy by SopF promoted S. Typhimurium proliferation in vivo. SopF targeted Gln124 of ATP6V0C in the V-ATPase for ADP-ribosylation. Mutation of Gln124 also blocked xenophagy, but not canonical autophagy. Thus, the discovery of SopF reveals the V-ATPase-ATG16L1 axis that critically mediates autophagic recognition of intracellular pathogen.
ADP, autophagy, Vacuolar Proton-Translocating ATPases, Virulence Factors, Autophagy-Related Proteins, V-ATPase, Genetics and Molecular Biology, ADP-Ribosylation, Bacterial Proteins, 1300 General Biochemistry, Genetics and Molecular Biology, xenophagy, Salmonella, Macroautophagy, Type III Secretion Systems, ATPase, bacteria-host interaction, Humans, bacteria, innate immunity, Gene Editing, V, ribosylation, 10226 Department of Molecular Mechanisms of Disease, type III secretion system, General Biochemistry, host interaction, 570 Life sciences; biology, CRISPR-Cas Systems, ADP-ribosylation; V-ATPase; autophagy; bacteria-host interaction; innate immunity; type III secretion system; xenophagy, Microtubule-Associated Proteins, ADP-ribosylation, HeLa Cells, Protein Binding
ADP, autophagy, Vacuolar Proton-Translocating ATPases, Virulence Factors, Autophagy-Related Proteins, V-ATPase, Genetics and Molecular Biology, ADP-Ribosylation, Bacterial Proteins, 1300 General Biochemistry, Genetics and Molecular Biology, xenophagy, Salmonella, Macroautophagy, Type III Secretion Systems, ATPase, bacteria-host interaction, Humans, bacteria, innate immunity, Gene Editing, V, ribosylation, 10226 Department of Molecular Mechanisms of Disease, type III secretion system, General Biochemistry, host interaction, 570 Life sciences; biology, CRISPR-Cas Systems, ADP-ribosylation; V-ATPase; autophagy; bacteria-host interaction; innate immunity; type III secretion system; xenophagy, Microtubule-Associated Proteins, ADP-ribosylation, HeLa Cells, Protein Binding
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