Repression of Runx2 function by TGF-b through recruitment of class II histone deacetylases by Smad3
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چکیده
Transforming growth factor-b (TGF-b) inhibits osteoblast differentiation through inhibition of the function of Runx2 (Cbfa1) by Smad3. The mechanism through which TGF-b/ Smad3 inhibits Runx2 function has not been characterized. We show that TGF-b induces histone deacetylation, primarily of histone H4, at the osteocalcin promoter, which is repressed by TGF-b, and that histone deacetylation is required for repression of Runx2 by TGF-b. This repression occurs through the action of the class IIa histone deacetylases (HDAC)4 and 5, which are recruited through interaction with Smad3 to the Smad3/Runx2 complex at the Runx2-binding DNA sequence. Accordingly, HDAC4 or 5 is required for efficient TGF-b-mediated inhibition of Runx2 function and is involved in osteoblast differentiation. Our results indicate that class IIa HDACs act as corepressors for TGF-b/Smad3-mediated transcriptional repression of Runx2 function in differentiating osteoblasts and are cell-intrinsic regulators of osteoblast differentiation. The EMBO Journal (2005) 24, 2543–2555. doi:10.1038/ sj.emboj.7600729; Published online 30 June 2005 Subject Categories: signal transduction
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Repression of Runx2 function by TGF-beta through recruitment of class II histone deacetylases by Smad3.
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تاریخ انتشار 2005