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Publication : p120-catenin regulates REST and CoREST, and modulates mouse embryonic stem cell differentiation.

First Author  Lee M Year  2014
Journal  J Cell Sci Volume  127
Issue  Pt 18 Pages  4037-51
PubMed ID  25074806 Mgi Jnum  J:216215
Mgi Id  MGI:5608522 Doi  10.1242/jcs.151944
Citation  Lee M, et al. (2014) p120-catenin regulates REST and CoREST, and modulates mouse embryonic stem cell differentiation. J Cell Sci 127(Pt 18):4037-51
abstractText  Although the canonical Wnt pathway and beta-catenin have been extensively studied, less is known about the role of p120-catenin (also known as delta1-catenin) in the nuclear compartment. Here, we report that p120-catenin binds and negatively regulates REST and CoREST (also known as Rcor1), a repressive transcriptional complex that has diverse developmental and pathological roles. Using mouse embryonic stem cells (mESCs), mammalian cell lines, Xenopus embryos and in vitro systems, we find that p120-catenin directly binds the REST-CoREST complex, displacing it from established gene targets to permit their transcriptional activation. Importantly, p120-catenin levels further modulate the mRNA and protein levels of Oct4 (also known as POU5F1), Nanog and Sox2, and have an impact upon the differentiation of mESCs towards neural fates. In assessing potential upstream inputs to this new p120-catenin-REST-CoREST pathway, REST gene targets were found to respond to the level of E-cadherin, with evidence suggesting that p120-catenin transduces signals between E-cadherin and the nucleus. In summary, we provide the first evidence for a direct upstream modulator and/or pathway regulating REST-CoREST, and reveal a substantial role for p120-catenin in the modulation of stem cell differentiation.
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