RRC ID 61239
著者 Kitazawa R, Kitazawa S.
タイトル Methylation status of a single CpG locus 3 bases upstream of TATA-box of receptor activator of nuclear factor-kappaB ligand (RANKL) gene promoter modulates cell- and tissue-specific RANKL expression and osteoclastogenesis.
ジャーナル Mol Endocrinol
Abstract Receptor activator of nuclear factor-kappaB ligand (RANKL) expression is tissue specific and limited to certain subsets of T-lymphocytes and stromal/osteoblastic cells. Even among osteoblasts, RANKL is expressed on about 20% of osteoblasts of the normal mouse. To clarify the mechanism of population-specific RANKL expression, we analyzed the effect of CpG methylation on its transcription, mRNA and protein expression as well as on osteoclastogenesis. Subpopulations of ST2 cells were used: P9, which expresses RANKL and supports osteoclastogenesis, and P16, which does not. By sodium bisulfite mapping, the rate of CpG methylation of the -65/+350 region, especially of CpG locus no. 1 three bases upstream of the TATA-box, was higher in P16 than in P9 ST2 cells. ChIP and gel shift assay showed that methylated CpG locus no. 1 was a target of MeCP2 binding that, in turn, blocked the binding of the TATA-box binding protein to the TATA-box. In vitro methylation by SssI of the promoter construct reduced its transcriptional activity at the steady state and its response to 1alpha,25(OH)2 vitamin D3. Conversely, treatment with DNA methylase inhibitor, 5-aza-2'-deoxycytidine, significantly restored RANKL expression and osteoclastogenesis in P16 cells. Except for primary cultured osteoblasts, CpG locus no. 1 was frequently methylated in various normal mouse tissues. We propose that the methylation status of the CpG locus three bases upstream of the TATA-box modulates the control of cell- and tissue-specific expression of RANKL gene and osteoclastogenesis. The heterogeneity of stromal/ osteoblastic cells in response to bone-resorbing stimuli may be attributed, in part, to the methylation status of the RANKL gene promoter.
巻・号 21(1)
ページ 148-58
公開日 2007-1-1
DOI 10.1210/me.2006-0205
PII me.2006-0205
PMID 17008384
MeSH Animals Azacitidine / analogs & derivatives Azacitidine / chemistry Bone Marrow Cells / metabolism CpG Islands* DNA Methylation* Decitabine Gene Expression Regulation* Mice Models, Biological Osteoblasts / metabolism Osteoclasts / metabolism* Promoter Regions, Genetic* RANK Ligand / genetics* RNA, Messenger / metabolism Receptors, Calcitriol / metabolism Stromal Cells / metabolism
IF 3.628
リソース情報
ヒト・動物細胞 ST2(RCB0224)