Chondroitin sulfate enhances the barrier function of basement membrane assembled by heparan sulfate

Author:

Tao Chenqi1ORCID,Makrides Neoklis1,Chuang Jen-Zen2,Wu Yihua1,Brooks Steven E.1,Esko Jeffrey D.3ORCID,Sung Ching-Hwa2,Zhang Xin14ORCID

Affiliation:

1. Columbia University 1 Department of Ophthalmology , , New York, NY 10032 , USA

2. Dyson Vision Research Institute, Weill Cornell Medicine 2 Department of Ophthalmology , , New York, NY 10065 , USA

3. Glycobiology Research and Training Center, University of California San Diego 3 Department of Cellular and Molecular Medicine , , La Jolla, CA 92093 , USA

4. Columbia University 4 Department of Pathology and Cell Biology , , New York, NY 10032 , USA

Abstract

ABSTRACT Glycosaminoglycans are ubiquitously expressed polysaccharides that are attached to proteoglycans. Here, we showed that ablation of the heparan sulfate (HS) polymerase Ext1 in retinal progenitor cells did not affect initial progression of retinal angiogenesis, but it disrupted the pruning of blood vessels and establishment of arterioles and venules. In the absence of retinal HS, blood vessels were also vulnerable to high oxygen tension in early postnatal stages, which could be rescued by exogenous vascular endothelial growth factor (VEGF), consistent with the role of retinal HS in the fine-tuning of VEGF signaling. Furthermore, we observed that the retinal inner limiting membrane (ILM) was disrupted by deletion of Ext1 in a timing-specific manner, suggesting that retinal HS is required for the assembly but not the maintenance of the basement membrane. Lastly, we showed that further deletion of C4st1, a chondroitin sulfate (CS) sulfation enzyme, did not affect the assembly of the ILM but, when combined with Ext1 deletion, it aggravated the retinal permeability by disrupting the retinal glycocalyx. These results demonstrate an important role of CS and HS in establishing the barrier function of the extracellular matrix.

Funder

National Institutes of Health

The Barbara and Donal Jonas Family Fund

Research to Prevent Blindness

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

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