Protein O‐Glycosylation Shapes Lymphatic Endothelia and Lymph Node Macrophage Populations

Endothelial cells were among the first cells identified to have a surface glycocalyx, but its functions are still elusive. Within the glycocalyx are many glycoproteins whose O-glycosylation is partly regulated by Cosmc, an essential chaperone for functional activity of T-synthase that adds galactose to O-glycans initiating their elongation. Using mice with inducible deletion of either Cosmc (C1Galt1C1) or the sialyltransferase St3Gal-1 in lymphatic endothelial cells (LEC), we discovered that loss of elongated O-glycans is accompanied by major changes in glycoprotein composition, including podoplanin, CD44, Lyve-1, and ICAM-1. These changes in the endothelial glycocalyx are sensed by adhesion molecules, such as Siglec-1, and lead to major changes in the size and phenotype of lymph node macrophage populations. Our findings demonstrate the crucial roles of O-glycosylation in regulating LEC functions and lymph node macrophage differentiation.

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Publication Details

Journal
The FASEB Journal
Published
2026-09-11
DOI
https://doi.org/10.1096/fj.202600240r
Primary Topic
Lymphatic System and Diseases
Type
article
Field-Weighted Citation Impact
0.00

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article

Protein O‐Glycosylation Shapes Lymphatic Endothelia and Lymph Node Macrophage Populations

Ea Kristine Clarisse Tulin, Richard D. Cummings, Vivianne I. Otto, Cornelia Halin et al.
The FASEB Journal
Lymphatic System and Diseases
article

Protein O‐Glycosylation Shapes Lymphatic Endothelia and Lymph Node Macrophage Populations

Ea Kristine Clarisse Tulin, Richard D. Cummings, Vivianne I. Otto, Cornelia Halin, Lothar C. Dieterich, Finn Brigger, Marco D’Addio, Jasmin Frey, Pascal Kunz, Annkathrin Ratter, Louie Cielen, Kinga Mikos
article en

Abstract

Endothelial cells were among the first cells identified to have a surface glycocalyx, but its functions are still elusive. Within the glycocalyx are many glycoproteins whose O-glycosylation is partly regulated by Cosmc, an essential chaperone for functional activity of T-synthase that adds galactose to O-glycans initiating their elongation. Using mice with inducible deletion of either Cosmc (C1Galt1C1) or the sialyltransferase St3Gal-1 in lymphatic endothelial cells (LEC), we discovered that loss of elongated O-glycans is accompanied by major changes in glycoprotein composition, including podoplanin, CD44, Lyve-1, and ICAM-1. These changes in the endothelial glycocalyx are sensed by adhesion molecules, such as Siglec-1, and lead to major changes in the size and phenotype of lymph node macrophage populations. Our findings demonstrate the crucial roles of O-glycosylation in regulating LEC functions and lymph node macrophage differentiation.

The FASEB JournalVol. 40(18)
Beth Israel Deaconess Medical Center (US), ETH Zurich (CH)
Vontobel-Stiftung
Openalex Percentile: Top 15%
Lymphatic System and Diseases
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Protein O‐Glycosylation Shapes Lymphatic Endothelia and Lymph Node Macrophage Populations — Ea Kristine Clarisse Tulin, Richard D. Cummings, et al. · The FASEB Journal (2026) | TGRS Research Map | TGRS