The type 3 secretion system requires actin polymerization to open translocon pores

Author:

Russo Brian C.,Duncan-Lowey Jeffrey K.ORCID,Chen PoyinORCID,Goldberg Marcia B.ORCID

Abstract

Many bacterial pathogens require a type 3 secretion system (T3SS) to establish a niche. Host contact activates bacterial T3SS assembly of a translocon pore in the host plasma membrane. Following pore formation, the T3SS docks onto the translocon pore. Docking establishes a continuous passage that enables the translocation of virulence proteins, effectors, into the host cytosol. Here we investigate the contribution of actin polymerization to T3SS-mediated translocation. Using the T3SS model organism Shigella flexneri, we show that actin polymerization is required for assembling the translocon pore in an open conformation, thereby enabling effector translocation. Opening of the pore channel is associated with a conformational change to the pore, which is dependent upon actin polymerization and a coiled-coil domain in the pore protein IpaC. Analysis of an IpaC mutant that is defective in ruffle formation shows that actin polymerization-dependent pore opening is distinct from the previously described actin polymerization-dependent ruffles that are required for bacterial internalization. Moreover, actin polymerization is not required for other pore functions, including docking or pore protein insertion into the plasma membrane. Thus, activation of the T3SS is a multilayered process in which host signals are sensed by the translocon pore leading to the activation of effector translocation.

Funder

National Institute of Allergy and Infectious Diseases

Executive Committee on Research, Massachusetts General Hospital

Charles A. King Trust

Publisher

Public Library of Science (PLoS)

Subject

Virology,Genetics,Molecular Biology,Immunology,Microbiology,Parasitology

Reference55 articles.

1. Type III secretion: more systems than you think;P Troisfontaines;Physiology (Bethesda).,2005

2. The T3SS of Shigella: Expression, Structure, Function, and Role in Vacuole Escape;W Bajunaid;Microorganisms.,2020

3. Bacterial type III secretion systems: specialized nanomachines for protein delivery into target cells;JE Galan;Annual review of microbiology,2014

4. The type III secretion injectisome, a complex nanomachine for intracellular ’toxin’ delivery;GR Cornelis;Biol Chem,2010

5. The type III secretion injectisome;GR Cornelis;Nat Rev Microbiol,2006

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