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Intracellular Galectin-9 Controls Dendritic Cell Function by Maintaining Plasma Membrane Rigidity

Authors :
Shannon Dieltjes
Oya Tagit
Yusuf Dolen
Toshiro Niki
Annemiek B. van Spriel
Mitsuomi Hirashima
Anne van Duffelen
Carl G. Figdor
Laia Querol Cano
Ben Joosten
Alessandra Cambi
Sonja I. Buschow
Koen van den Dries
Gastroenterology & Hepatology
Source :
iScience, iScience, 22, 240-+. Elsevier Inc., iScience, 22, pp. 240-255, iScience, 22, 240-255, iScience, Vol 22, Iss, Pp 240-255 (2019)
Publication Year :
2019
Publisher :
Elsevier Inc., 2019.

Abstract

Summary Endogenous extracellular Galectins constitute a novel mechanism of membrane protein organization at the cell surface. Although Galectins are also highly expressed intracellularly, their cytosolic functions are poorly understood. Here, we investigated the role of Galectin-9 in dendritic cell (DC) surface organization and function. By combining functional, super-resolution and atomic force microscopy experiments to analyze membrane stiffness, we identified intracellular Galectin-9 to be indispensable for plasma membrane integrity and structure in DCs. Galectin-9 knockdown studies revealed intracellular Galectin-9 to directly control cortical membrane structure by modulating Rac1 activity, providing the underlying mechanism of Galectin-9-dependent actin cytoskeleton organization. Consequent to its role in maintaining plasma membrane structure, phagocytosis studies revealed that Galectin-9 was essential for C-type-lectin receptor-mediated pathogen uptake by DCs. This was confirmed by the impaired phagocytic capacity of Galectin-9-null murine DCs. Together, this study demonstrates a novel role for intracellular Galectin-9 in modulating DC function, which may be evolutionarily conserved.<br />Graphical Abstract<br />Highlights • Galectin-9 is required for particle uptake by both human and murine dendritic cells • Galectin-9 is associated with the cortical actin cytoskeleton • Galectin-9 controls plasma membrane integrity and rigidity • Galectin-9 regulates Rac1 activity and recruitment to nascent phagosomes<br />Biological Sciences; Molecular Biology; Cell Biology

Details

ISSN :
25890042
Volume :
22
Database :
OpenAIRE
Journal :
iScience
Accession number :
edsair.doi.dedup.....94cf563185751a02fb54e795f1c55b44
Full Text :
https://doi.org/10.1016/j.isci.2019.11.019