Lumenal Galectin-9-Lamp2 interaction regulates lysosome and autophagy to prevent pathogenesis in the intestine and pancreas

Intracellular galectins are carbohydrate-binding proteins capable of sensing and repairing damaged lysosomes. As in the physiological conditions glycosylated moieties are mostly in the lysosomal lumen but not cytosol, it is unclear whether galectins reside in lysosomes, bind to glycosylated proteins...

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Veröffentlicht in:Nature communications 2020-08, Vol.11 (1), p.4286-4286, Article 4286
Hauptverfasser: Sudhakar, Janaki N., Lu, Hsueh-Han, Chiang, Hung-Yu, Suen, Ching-Shu, Hwang, Ming-Jing, Wu, Sung-Yu, Shen, Chia-Ning, Chang, Yao-Ming, Li, Fu-An, Liu, Fu-Tong, Shui, Jr-Wen
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Sprache:eng
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Zusammenfassung:Intracellular galectins are carbohydrate-binding proteins capable of sensing and repairing damaged lysosomes. As in the physiological conditions glycosylated moieties are mostly in the lysosomal lumen but not cytosol, it is unclear whether galectins reside in lysosomes, bind to glycosylated proteins, and regulate lysosome functions. Here, we show in gut epithelial cells, galectin-9 is enriched in lysosomes and predominantly binds to lysosome-associated membrane protein 2 (Lamp2) in a Asn(N)-glycan dependent manner. At the steady state, galectin-9 binding to glycosylated Asn 175 of Lamp2 is essential for functionality of lysosomes and autophagy. Loss of N-glycan-binding capability of galectin-9 causes its complete depletion from lysosomes and defective autophagy, leading to increased endoplasmic reticulum (ER) stress preferentially in autophagy-active Paneth cells and acinar cells. Unresolved ER stress consequently causes cell degeneration or apoptosis that associates with colitis and pancreatic disorders in mice. Therefore, lysosomal galectins maintain homeostatic function of lysosomes to prevent organ pathogenesis. Galectins are carbohydrate binding proteins previously implicated in sensing and repairing damaged lysosomes. Here, the authors show that galectin-9 has specific lysosomal roles in autophagy and contributes to cell degeneration and apoptosis in colitis and pancreatitis in mice.
ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-020-18102-7