Artículos de revistas
Mll-COMPASS complexes mediate H3K4me3 enrichment and transcription of the osteoblast master gene Runx2/p57 in osteoblasts
Fecha
2018Registro en:
10974652
00219541
10.1002/jcp.27355
Autor
Rojas, Adriana
Sepulveda, Hugo
Henriquez, Berta
Aguilar, Rodrigo
Opazo, Tatiana
Nardocci, Gino
Bustos, Fernando
Lian, Jane B.
Stein, Janet L.
Stein, Gary S.
van Zundert, Brigitte
van Wijnen, Andre J.
Allende Connelly, Miguel
Montecino, Martín
Institución
Resumen
© 2018 Wiley Periodicals, Inc. Expression of Runx2/p57 is a hallmark of the osteoblast-lineage identity. Although several regulators that control the expression of Runx2/p57 during osteoblast-lineage commitment have been identified, the epigenetic mechanisms that sustain this expression in differentiated osteoblasts remain to be completely determined. Here, we assess epigenetic mechanisms associated with Runx2/p57 gene transcription in differentiating MC3T3 mouse osteoblasts. Our results show that an enrichment of activating histone marks at the Runx2/p57 P1 promoter is accompanied by the simultaneous interaction of Wdr5 and Utx proteins, both are components of COMPASS complexes. Knockdown of Wdr5 and Utx expression confirms the activating role of both proteins at the Runx2-P1 promoter. Other chromatin modifiers that were previously described to regulate Runx2/p57 transcription in mesenchymal precursor cells (Ezh2, Prmt5, and Jarid1b proteins) were not found to contribute to Runx2/p57