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P27Kip1 directly represses Sox2 during embryonic stem cell differentiation

Li, Han; Collado Rodríguez, Manuel; Villasante, Aranzazu; Matheu, Ander; Lynch, Cian J; Cañamero, Marta; Rizzoti, Karine; Carneiro Freire, Carmen; Martínez Rio, Gloria; Vidal Figueroa, Anxo; Lovell-Badge, Robin; Serrano, Manuel
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URI: http://hdl.handle.net/20.500.11940/4896
PMID: 23217425
DOI: 10.1016/j.stem.2012.09.014
ISSN: 1934-5909
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Cell Stem Cell. 2012;11(6):845-52 (762.6Kb)
Fecha de publicación
2012
Título de revista
Cell Stem Cell
Tipo de contenido
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Resumen
The mechanisms responsible for the transcriptional silencing of pluripotency genes in differentiated cells are poorly understood. We have observed that cells lacking the tumor suppressor p27 can be reprogrammed into induced pluripotent stem cells (iPSCs) in the absence of ectopic Sox2. Interestingly, cells and tissues from p27 null mice, including brain, lung, and retina, present an elevated basal expression of Sox2, suggesting that p27 contributes to the repression of Sox2. Furthermore, p27 null iPSCs fail to fully repress Sox2 upon differentiation. Mechanistically, we have found that upon differentiation p27 associates to the SRR2 enhancer of the Sox2 gene together with a p130-E2F4-SIN3A repressive complex. Finally, Sox2 haploinsufficiency genetically rescues some of the phenotypes characteristic of p27 null mice, including gigantism, pituitary hyperplasia, pituitary tumors, and retinal defects. Collectively, these results demonstrate an unprecedented connection between p27 and Sox2 relevant for reprogramming and cancer and for understanding human pathologies associated with p27 germline mutations.

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