RECIPROCAL REGULATION OF OSTEOCALCIN TRANSCRIPTION BY THE HOMEODOMAINPROTEINS MSX2 AND DLX5

Citation
Ep. Newberry et al., RECIPROCAL REGULATION OF OSTEOCALCIN TRANSCRIPTION BY THE HOMEODOMAINPROTEINS MSX2 AND DLX5, Biochemistry (Easton), 37(46), 1998, pp. 16360-16368
Citations number
39
Categorie Soggetti
Biology
Journal title
ISSN journal
00062960
Volume
37
Issue
46
Year of publication
1998
Pages
16360 - 16368
Database
ISI
SICI code
0006-2960(1998)37:46<16360:RROOTB>2.0.ZU;2-#
Abstract
Osteocalcin(OC) is a small calcium binding protein expressed in bones and teeth undergoing mineralization. OC expression in calvarial osteob lasts and odontoblasts is regulated in part via protein-protein intera ctions between the homeodomain repressor, Msx2, and components of the cell type-specific basal OC promoter. Recent work suggests that homeod omain proteins form heterodimers that confer transcriptional regulatio n. Since the homeodomain proteins D1x5 and Msx2 are both expressed by primary rat calvarial osteoblasts, we examined whether Msx2 and D1x5 f unctionally interact to regulate the OC promoter. In both primary rat calvarial and MC3T3E1 mouse calvarial osteoblasts, transient expressio n of D1x5 only mildly augments basal OC promoter (luciferase reporter) activity, while Msx2 suppresses transcriptional activity by ca. 80%. However, D1x5 completely reverses Msx2 repression of the OC promoter. Structure-function analyses using far-Western blot and transient cotra nsfection assays reveal that (i) Msx2 and D1x5 can form dimers, (ii) D 1x5 residues 127-143 are necessary for dimerization and to reverse Msx 2-dependent OC repression, and (iii) intrinsic DNA binding activity of D1x5 is not required for OC regulation. Msx2 inhibits the DNA binding activity of a third complex, the OC fibroblast growth factor response element binding protein (OCFREB), that supports activity of the basal OC promoter. D1x5 completely abrogates Msx2 suppression of OCFREB DNA binding activity, and residues required for D1x5 transcriptional de-r epression in vivo are also required for reversing inhibition of OCFREB binding in vitro. Finally, D1x5 reverses Msx2 inhibition of OC promot er activation by FGF2/forskolin. Thus, D1x5 regulates the expression o f the OC promoter in calvarial osteoblasts in part by de-repression, a ntagonizing Msx2 repression of transcription factors that support basa l OC promoter activity.