A tale of two collagen receptors, integrin β1and discoidin domain receptor 1, in epithelial cell differentiation

Author:

Yeh Yi-Chun1,Lin Hsi-Hui1,Tang Ming-Jer12

Affiliation:

1. Department of Physiology, National Cheng Kung University Medicine College, Tainan, Taiwan; and

2. Center for Gene Regulation and Signal Transduction, National Cheng Kung University Medicine College, Tainan, Taiwan

Abstract

As increase in collagen deposition is no longer taken as simply a consequence but, rather, an inducer of disease progression; therefore, the understanding of collagen signal transduction is fundamentally important. Cells contain at least two types of collagen receptors: integrins and discoidin domain receptors (DDRs). The integrin heterodimers α1β1, α2β1, α10β1, and α11β1are recognized as the non-tyrosine kinase collagen receptors. DDR1 and 2, the tyrosine kinase receptors of collagen, are specifically expressed in epithelium and mesenchyme, respectively. While integrin β1and DDR1 are both required for cell adhesion on collagen, their roles in epithelial cell differentiation during development and disease progression seem to counteract each other, with integrin β1favoring epithelium mesenchyme transition (EMT) and DDR1 inducing epithelial cell differentiation. The in vitro evidence shows that the integrin β1and DDR1 exert opposing actions in regulation of membrane stability of E-cadherin, which itself is a critical regulator of epithelial cell differentiation. Here, we review the functional roles of integrin β1and DDR1 in regulation of epithelial cell differentiation during development and disease progression, and explore the underlining mechanisms regarding to the regulation of membrane stability of E-cadherin.

Publisher

American Physiological Society

Subject

Cell Biology,Physiology

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