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Sirtuin 1 regulation of developmental genes during differentiation of stem cells
Authors:Vincenzo Calvanese  Ester Lara  Beatriz Suárez-álvarez  Raed Abu Dawud  Mercedes Vázquez-Chantada  Maria Luz Martínez-Chantar  Nieves Embade  Pilar López-Nieva  Angelica Horrillo  Abdelkrim Hmadcha  Bernat Soria  Daniela Piazzolla  Daniel Herranz  Manuel Serrano  Jose María Mato  Peter W Andrews  Carlos López-Larrea  Manel Esteller  Mario F Fraga
Abstract:The longevity-promoting NAD+–dependent class III histone deacetylase Sirtuin 1 (SIRT1) is involved in stem cell function by controlling cell fate decision and/or by regulating the p53-dependent expression of NANOG. We show that SIRT1 is down-regulated precisely during human embryonic stem cell differentiation at both mRNA and protein levels and that the decrease in Sirt1 mRNA is mediated by a molecular pathway that involves the RNA-binding protein HuR and the arginine methyltransferase coactivator-associated arginine methyltransferase 1 (CARM1). SIRT1 down-regulation leads to reactivation of key developmental genes such as the neuroretinal morphogenesis effectors DLL4, TBX3, and PAX6, which are epigenetically repressed by this histone deacetylase in pluripotent human embryonic stem cells. Our results indicate that SIRT1 is regulated during stem cell differentiation in the context of a yet-unknown epigenetic pathway that controls specific developmental genes in embryonic stem cells.
Keywords:coactivator-associated arginine methyltransferase 1  HuR  neural differentiation  embryonic stem cells
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