Mapping the placental galectin-3 interactome identifies CD9 and ITGB1 as functional glycoprotein counterreceptors during syncytialization

A Abigail E. Reeves (Skaggs Graduate School of Chemical and Biological Sciences, Scripps Research) G Gil-Suk Yang (Department of Chemistry, Scripps Research) S Sabyasachi Baboo J Jolene K. Diedrich P Pranali Bedekar (Skaggs Graduate School of Chemical and Biological Sciences, Scripps Research) S Shaheen A. Farhadi (J. Crayton Pruitt Family Department of Biomedical Engineering, University of Florida) A Arun Wanchoo (J. Crayton Pruitt Family Department of Biomedical Engineering, University of Florida) C Christopher Bratcher (Department of Chemistry, Scripps Research) G Gregory A. Hudalla (J. Crayton Pruitt Family Department of Biomedical Engineering, University of Florida) J John R. Yates M Mia L. Huang (Skaggs Graduate School of Chemical and Biological Sciences, Scripps Research)

Abstract

The fetomaternal interface is replete with glycan-binding proteins (GBPs) that can interact with cell surface glycoprotein counterreceptors to regulate placental function. Here, we interrogate the role of galectin-3, a GBP that controls placental trophoblast syncytialization, an important differentiation process where progenitor cytotrophoblast cells fuse to produce the multinucleated syncytiotrophoblast. The molecular mechanism of galectin-3-mediated fusion has not yet been elucidated in part due to the difficulty of studying glycan-GBP binding events in live cells. To overcome these challenges, we employ a proximity labeling strategy to identify the galectin-3 interactome. From this interactome dataset, we selected and validated CD9 and integrin beta 1 as functional counterreceptors of galectin-3 and showed that CD9 is glycosylated with an N-linked glycan at a rare noncanonical sequon. Furthermore, we present evidence that galectin-3 acts to physically alter the fluidity of the cellular membrane, and it does not activate canonical syncytialization signaling pathways. Overall, we report that galectin-mediated binding events and their corresponding functions in cell biology can be precisely regulated by select glycoproteins at specific glycosites.

Article Details

Volume / Issue Vol. 122, Issue 45
Published November 11, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (11)

A

Abigail E. Reeves

Skaggs Graduate School of Chemical and Biological Sciences, Scripps Research

G

Gil-Suk Yang

Department of Chemistry, Scripps Research

S

Sabyasachi Baboo

J

Jolene K. Diedrich

P

Pranali Bedekar

Skaggs Graduate School of Chemical and Biological Sciences, Scripps Research

S

Shaheen A. Farhadi

J. Crayton Pruitt Family Department of Biomedical Engineering, University of Florida

A

Arun Wanchoo

J. Crayton Pruitt Family Department of Biomedical Engineering, University of Florida

C

Christopher Bratcher

Department of Chemistry, Scripps Research

G

Gregory A. Hudalla

J. Crayton Pruitt Family Department of Biomedical Engineering, University of Florida

J

John R. Yates

M

Mia L. Huang

Skaggs Graduate School of Chemical and Biological Sciences, Scripps Research