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Makrides, N.

Publications and source records attributed to Makrides, N..

2 recordsLinked to original sources

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

Glycosaminoglycans (GAGs) are ubiquitously expressed polysaccharides attached to proteoglycans, but their functions in the retina are poorly understood. Here we generated conditional knockouts of biosynthetic enzymes for heparan sulfate (HS) and chondroitin sulfate (CS) in retinal progenitor cells. We showed that ablation of HS polymerase Ext1 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 can be rescued by exogenous 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 ILM. Lastly, we showed that further deletion of C4st1, a CS sulfation enzyme, did not affect the assembly of the ILM, but aggravated the ILM permeability when combined with Ext1 deletion. These results demonstrated an important role of CS and HS in establishing the barrier function of basement membrane.

developmental biology↗

Phase transition specified by a binary code patterns the vertebrate eye cup

The developing vertebrate eye cup is partitioned into the neural retina (NR), the retinal pigmented epithelium (RPE) and the ciliary margin (CM). By single cell analysis, we showed that a gradient of FGF signaling regulates demarcation and subdivision of the CM and controls its stem cell-like property of self-renewal, differentiation and survival. This regulation by FGF is balanced by an evolutionarily conserved Wnt signaling gradient induced by the lens ectoderm and the periocular mesenchyme, which specifies the CM and the distal RPE. These two morphogen gradients converge in the CM where FGF signaling promotes Wnt signaling by stabilizing {beta}-catenin in a GSK3{beta}-independent manner. We further showed that activation of Wnt signaling converts the NR to either the CM or the RPE depending on the level of FGF signaling. Conversely, activation of FGF transforms the RPE to the NR or CM dependent on Wnt activity. We demonstrated that the default fate of the eye cup is the NR, but synergistic FGF and Wnt signaling promotes CM formation both in vivo and in retinal organoid culture of human iPS cells. Our study reveals that the vertebrate eye develops through phase transition determined by a combinatorial code of FGF and Wnt signaling.

developmental biology↗