Spatial N-glycan rearrangement on α5β1 integrin nucleates galectin-3 oligomers to determine endocytic fate
Abstract
Abstract Membrane glycoproteins frequently adopt different conformations when altering between active and inactive states. Here, we discover a molecular switch that exploits dynamic spatial rearrangements of N-glycans during such conformational transitions to control protein function. For the conformationally switchable cell adhesion glycoprotein α 5 β 1 integrin, we find that only the bent-closed state arranges N-glycans to nucleate the formation of up to tetrameric oligomers of the glycan-binding protein galectin-3. We propose a structural model of how these galectin-3 oligomers are built and how they clamp the bent-closed state to select it for endocytic uptake and subsequent retrograde trafficking to the Golgi for polarized distribution in cells. Our findings reveal the dynamic regulation of the glycan landscape at the cell surface to achieve oligomerization of galectin-3. Galectin-3 oligomers are thereby identified as functional decoders of defined spatial patterns of N-glycans on specifically the bent-closed conformational state of α 5 β 1 integrin and possibly other integrin family members.
Article Details
Authors (22)
Massiullah Shafaq-Zadah
Estelle Dransart
Ilyes Hamitouche
Christian Wunder
Valérie Chambon
Cesar A. Valades-Cruz
Ludovic Leconte
SERPICO/STED Team, UMR144 CNRS Institut Curie, Université PSL, Sorbonne Université
Nirod Kumar Sarangi
Jack Robinson
Siau-Kun Bai
Raju Regmi
Aurélie Di Cicco
Agnès Hovasse
Richard Bartels
Ulf J. Nilsson
Sarah Cianférani-Sanglier
Hakon Leffler
Tia E. Keyes
Daniel Levy
Population Sciences Branch, National Heart, Lung, and Blood Institute, National Institutes of Health, Bethesda, MD, USA.
Stefan Raunser
Daniel Roderer
Leibniz-Forschungsinstitut fur Molekulare Pharmakologie
Ludger Johannes