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Publication : Bmi1 facilitates primitive endoderm formation by stabilizing Gata6 during early mouse development.

First Author  Lavial F Year  2012
Journal  Genes Dev Volume  26
Issue  13 Pages  1445-58
PubMed ID  22713603 Mgi Jnum  J:185350
Mgi Id  MGI:5428345 Doi  10.1101/gad.188193.112
Citation  Lavial F, et al. (2012) Bmi1 facilitates primitive endoderm formation by stabilizing Gata6 during early mouse development. Genes Dev 26(13):1445-58
abstractText  The transcription factors Nanog and Gata6 are critical to specify the epiblast versus primitive endoderm (PrE) lineages. However, little is known about the mechanisms that regulate the protein stability and activity of these factors in the developing embryo. Here we uncover an early developmental function for the Polycomb group member Bmi1 in supporting PrE lineage formation through Gata6 protein stabilization. We show that Bmi1 is enriched in the extraembryonic (endoderm [XEN] and trophectodermal stem [TS]) compartment and repressed by Nanog in pluripotent embryonic stem (ES) cells. In vivo, Bmi1 overlaps with the nascent Gata6 and Nanog protein from the eight-cell stage onward before it preferentially cosegregates with Gata6 in PrE progenitors. Mechanistically, we demonstrate that Bmi1 interacts with Gata6 in a Ring finger-dependent manner to confer protection against Gata6 ubiquitination and proteasomal degradation. A direct role for Bmi1 in cell fate allocation is established by loss-of-function experiments in chimeric embryoid bodies. We thus propose a novel regulatory pathway by which Bmi1 action on Gata6 stability could alter the balance between Gata6 and Nanog protein levels to introduce a bias toward a PrE identity in a cell-autonomous manner.
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