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Histone Deacetylase 1-Mediated Histone Modification Regulates Osteoblast Differentiation
Author(s) -
Hyun Woo Lee,
Jung Hee Suh,
Ayoung Kim,
Yun Sok Lee,
So Yun Park,
Jae Bum Kim
Publication year - 2006
Publication title -
molecular endocrinology
Language(s) - Uncategorized
Resource type - Journals
eISSN - 1944-9917
pISSN - 0888-8809
DOI - 10.1210/me.2006-0061
Subject(s) - osteoblast , biology , sodium butyrate , histone deacetylase , histone deacetylase 5 , hdac4 , histone h4 , histone , chromatin immunoprecipitation , osteopontin , hdac11 , trichostatin a , microbiology and biotechnology , histone deacetylase 2 , gene expression , promoter , biochemistry , gene , endocrinology , in vitro
Osteogenesis is a complex process associated with dramatic changes in gene expression. To elucidate whether modifications in chromatin structure are involved in osteoblast differentiation, we examined the expression levels of histone deacetylases (HDACs) and the degree of histone acetylation at the promoter regions of osteogenic genes. During osteogenesis, total HDAC enzymatic activity was decreased with significant reduction in HDAC1 expression. Consistently, recruitment of HDAC1 to the promoters of osteoblast marker genes, including osterix and osteocalcin, was down-regulated, whereas histone H3 and H4 were hyperacetylated at those promoters during osteoblast differentiation. Moreover, suppression of HDAC activity with a HDAC inhibitor, sodium butyrate, accelerated osteogenesis by inducing osteoblast marker genes including osteopontin and alkaline phosphatase. Consistently, knockdown of HDAC1 by the short interference RNA system stimulated osteoblast differentiation. Taken together, these data propose that down-regulation of HDAC1 is an important process for osteogenesis.

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