Control of infection by LC3-associated phagocytosis, CASM, and detection of raised vacuolar pH by the V-ATPase-ATG16L1 axis

Author:

Wang Yingxue12ORCID,Ramos Maria12ORCID,Jefferson Matthew1ORCID,Zhang Weijiao1ORCID,Beraza Naiara2ORCID,Carding Simon2ORCID,Powell Penny P.1ORCID,Stewart James P.3ORCID,Mayer Ulrike4ORCID,Wileman Thomas12ORCID

Affiliation:

1. Norwich Medical School, University of East Anglia, Norwich, UK.

2. Quadram Institute Bioscience, Norwich, UK.

3. Department of Infection Biology, University of Liverpool, Liverpool, UK.

4. School of Biological Sciences, University of East Anglia, Norwich, UK.

Abstract

The delivery of pathogens to lysosomes for degradation provides an important defense against infection. Degradation is enhanced when LC3 is conjugated to endosomes and phagosomes containing pathogens to facilitate fusion with lysosomes. In phagocytic cells, TLR signaling and Rubicon activate LC3-associated phagocytosis (LAP) where stabilization of the NADPH oxidase leads to sustained ROS production and raised vacuolar pH. Raised pH triggers the assembly of the vacuolar ATPase on the vacuole membrane where it binds ATG16L1 to recruit the core LC3 conjugation complex (ATG16L1:ATG5-12). This V-ATPase-ATG16L1 axis is also activated in nonphagocytic cells to conjugate LC3 to endosomes containing extracellular microbes. Pathogens provide additional signals for recruitment of LC3 when they raise vacuolar pH with pore-forming toxins and proteins, phospholipases, or specialized secretion systems. Many microbes secrete virulence factors to inhibit ROS production and/or the V-ATPase-ATG16L1 axis to slow LC3 recruitment and avoid degradation in lysosomes.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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