The retinal pigment epithelium (RPE) consists of a monolayer of cuboidal,pigmented cells that is located between the retina and the choroid. The RPE is vital for growth and function of the vertebrate eye and improper development results in congenital defects, such as microphthalmia or anophthalmia, or a change of cell fate into neural retina called transdifferentiation. The transcription factors microphthalmia-associated transcription factor (Mitf)and orthodenticle homolog 2 (Otx2) are crucial for RPE development and function; however, very little is known about their regulation. Here, by using a Wnt-responsive reporter, we show that the Wnt/β-catenin pathway is activated in the differentiating mouse RPE. Cre-mediated, RPE-specific disruption of β-catenin after the onset of RPE specification causes severe defects, resulting in microphthalmia with coloboma, disturbed lamination, and mislocalization of adherens junction proteins. Uponβ-catenin deletion, the RPE transforms into a multilayered tissue in which the expression of Mitf and Otx2 is downregulated, while retina-specific gene expression is induced, which results in the transdifferentiation of RPE into retina. Chromatin immunoprecipitation (ChIP) and luciferase assays indicate that β-catenin binds near to and activates potential TCF/LEF sites in the Mitf and Otx2 enhancers. We conclude that Wnt/β-catenin signaling is required for differentiation of the RPE by directly regulating the expression of Mitf and Otx2. Our study is the first to show that an extracellular signaling pathway directly regulates the expression of RPE-specific genes such as Mitf and Otx2, and elucidates a new role for the Wnt/β-catenin pathway in organ formation and development.

We are grateful to Pierre Chambon, Manuel Mark and Peter Klein for providing Tyrp1-Cre mice and BATgal mice, respectively. We thank Amber Mathiesen, Andrew Loudon and the Levine and Marc labs for technical help;ChangJiang Zou for providing the Mitf-D enhancer fragment; and Rich Dorsky,Wolfgang Baehr and Ed Levine for helpful comments. This project was supported by the NIH(EY14954, EY014800) and by an unrestricted grant from Research to Prevent Blindness to the Department of Ophthalmology, University of Utah. Deposited in PMC for release after 12 months.

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