Galectin-9 interacts with Vamp-3 to regulate cytokine secretion in dendritic cells.
Details
Serval ID
serval:BIB_41FCC7373F55
Type
Article: article from journal or magazin.
Collection
Publications
Institution
Title
Galectin-9 interacts with Vamp-3 to regulate cytokine secretion in dendritic cells.
Journal
Cellular and molecular life sciences
ISSN
1420-9071 (Electronic)
ISSN-L
1420-682X
Publication state
Published
Issued date
27/09/2023
Peer-reviewed
Oui
Volume
80
Number
10
Pages
306
Language
english
Notes
Publication types: Journal Article
Publication Status: epublish
Publication Status: epublish
Abstract
Intracellular vesicle transport is essential for cellular homeostasis and is partially mediated by SNARE proteins. Endosomal trafficking to the plasma membrane ensures cytokine secretion in dendritic cells (DCs) and the initiation of immune responses. Despite its critical importance, the specific molecular components that regulate DC cytokine secretion are poorly characterised. Galectin-9, a ß-galactoside-binding protein, has emerged as a novel cellular modulator although its exact intracellular roles in regulating (immune) cell homeostasis and vesicle transport are virtually unknown. We investigated galectin-9 function in primary human DCs and report that galectin-9 is essential for intracellular cytokine trafficking to the cell surface. Galectin-9-depleted DCs accumulate cytokine-containing vesicles in the Golgi complex that eventually undergo lysosomal degradation. We observed galectin-9 to molecularly interact with Vamp-3 using immunoprecipitation-mass-spectrometry and identified galectin-9 was required for rerouting Vamp-3-containing endosomes upon DC activation as the underlying mechanism. Overall, this study identifies galectin-9 as a necessary mechanistic component for intracellular trafficking. This may impact our general understanding of vesicle transport and sheds new light into the multiple roles galectins play in governing cell function.
Keywords
Cytokine secretion, Dendritic cells, Galectin-9, Intracellular trafficking, Vamp-3
Pubmed
Open Access
Yes
Create date
29/09/2023 14:09
Last modification date
24/01/2024 7:39