Epithelial-mesenchymal status influences how cells deposit fibrillin microfibrils

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Abstract

Here, we show that epithelial-mesenchymal status influences how cells deposit extracellular matrix. Retinal pigmented epithelial (RPE) cells that expressed high levels of E-cadherin and had cell-cell junctions rich in zona occludens (ZO)-1, β-catenin and heparan sulfate, required syndecan-4 but not fibronectin or protein kinase C a (PKCα) to assemble extracellular matrix (fibrillin microfibrils and perlecan). In contrast, RPE cells that strongly expressed mesenchymal smooth muscle α-actin but little ZO-1 or E-cadherin, required fibronectin (like fibroblasts) and PKCα, but not syndecan-4. Integrins α5β1 and/or α8β1 and actomyosin tension were common requirements for microfibril deposition, as was heparan sulfate biosynthesis. TGFβ, which stimulates epithelial-mesenchymal transition, altered gene expression and overcame the dependency on syndecan-4 for microfibril deposition in epithelial RPE cells, whereas blocking cadherin interactions disrupted microfibril deposition. Renal podocytes had a transitional phenotype with pericellular β-catenin but little ZO-1; they required syndecan-4 and fibronectin for efficient microfibril deposition. Thus, epithelial- mesenchymal status modulates microfibril deposition. © 2014. Published by The Company of Biologists Ltd.

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Baldwin, A. K., Cain, S. A., Lennon, R., Godwin, A., Merry, C. L. R., & Kielty, C. M. (2014). Epithelial-mesenchymal status influences how cells deposit fibrillin microfibrils. Journal of Cell Science, 127(1), 158–171. https://doi.org/10.1242/jcs.134270

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