Galectin 8 targets damaged vesicles for autophagy to defend cells against bacterial invasion.
Author(s)
Thurston, TLM
Wandel, MP
von Muhlinen, N
Foeglein, A
Randow, F
Type
Journal Article
Abstract
Autophagy defends the mammalian cytosol against bacterial infection1,2,3. Efficient pathogen engulfment is mediated by cargo-selecting autophagy adaptors that rely on unidentified pattern-recognition or danger receptors to label invading pathogens as autophagy cargo, typically by polyubiquitin coating4,5,6,7,8,9. Here we show in human cells that galectin 8 (also known as LGALS8), a cytosolic lectin, is a danger receptor that restricts Salmonella proliferation. Galectin 8 monitors endosomal and lysosomal integrity and detects bacterial invasion by binding host glycans exposed on damaged Salmonella-containing vacuoles. By recruiting NDP52 (also known as CALCOCO2), galectin 8 activates antibacterial autophagy. Galectin-8-dependent recruitment of NDP52 to Salmonella-containing vesicles is transient and followed by ubiquitin-dependent NDP52 recruitment. Because galectin 8 also detects sterile damage to endosomes or lysosomes, as well as invasion by Listeria or Shigella, we suggest that galectin 8 serves as a versatile receptor for vesicle-damaging pathogens. Our results illustrate how cells deploy the danger receptor galectin 8 to combat infection by monitoring endosomal and lysosomal integrity on the basis of the specific lack of complex carbohydrates in the cytosol.
Date Issued
2012-01-15
Date Acceptance
2011-12-01
Citation
Nature, 2012, 482, pp.414-418
ISSN
0028-0836
Publisher
Nature Publishing Group
Start Page
414
End Page
418
Journal / Book Title
Nature
Volume
482
Copyright Statement
© 2012 Macmillan Publishers Limited. All rights reserved.
Subjects
Science & Technology
Multidisciplinary Sciences
Science & Technology - Other Topics
GENOME-WIDE ASSOCIATION
ADAPTER PROTEINS
MAMMALIAN-CELLS
CROHNS-DISEASE
IMMUNITY
UBIQUITIN
SUSCEPTIBILITY
SALMONELLA
INFLAMMATION
RECOGNITION
Autophagy
Cell Proliferation
Cytoplasm
Cytoplasmic Vesicles
Endosomes
Galectins
HeLa Cells
Humans
Lysosomes
Nuclear Proteins
Salmonella Infections
Salmonella typhimurium
Hela Cells
MD Multidisciplinary
General Science & Technology
Date Publish Online
2012-01-15