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  4. Helicobacter pylori induces intracellular galectin-8 aggregation around damaged lysosomes within gastric epithelial cells in a host O-glycan-dependent manner
 
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Helicobacter pylori induces intracellular galectin-8 aggregation around damaged lysosomes within gastric epithelial cells in a host O-glycan-dependent manner

Journal
Glycobiology
Journal Volume
29
Journal Issue
2
Pages
151-162
Date Issued
2018
Author(s)
Li F.-Y.
Weng I.-C.
Lin C.-H.
Kao M.-C.
MING-SHIANG WU  
Chen H.-Y.
Liu F.-T.
DOI
10.1093/glycob/cwy095
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85060058256&doi=10.1093%2fglycob%2fcwy095&partnerID=40&md5=d8dc77d2af32a315f0a7a7b61f8f0bd9
https://scholars.lib.ntu.edu.tw/handle/123456789/618228
Abstract
Galectin-8, a beta-galactoside-binding lectin, is upregulated in the gastric tissues of rhesus macaques infected with Helicobacter pylori. In this study, we found that H. pylori infection triggers intracellular galectin-8 aggregation in human-derived AGS gastric epithelial cells, and that these aggregates colocalize with lysosomes. Notably, this aggregation is markedly reduced following the attenuation of host O-glycan processing. This indicates that H. pylori infection induces lysosomal damage, which in turn results in the accumulation of cytosolic galectin-8 around damaged lysosomes through the recognition of exposed vacuolar host O-glycans. H. pylori-induced galectin-8 aggregates also colocalize with autophagosomes, and galectin-8 ablation reduces the activation of autophagy by H. pylori. This suggests that galectin-8 aggregates may enhance autophagy activity in infected cells. We also observed that both autophagy and NDP52, an autophagy adapter, contribute to the augmentation of galectin-8 aggregation by H. pylori. Additionally, vacuolating cytotoxin A, a secreted H. pylori cytotoxin, may contribute to the increased galectin-8 aggregation and elevated autophagy response in infected cells. Collectively, these results suggest that H. pylori promotes intracellular galectin-8 aggregation, and that galectin-8 aggregation and autophagy may reciprocally regulate each other during infection.
SDGs

[SDGs]SDG3

Publisher
Oxford University Press
Type
journal article

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