RRC ID 41903
Author Verlinden L, Verstuyf A, Verboven C, Eelen G, De Ranter C, Gao LJ, Chen YJ, Murad I, Choi M, Yamamoto K, Yamada S, Van Haver D, Vandewalle M, De Clercq PJ, Bouillon R.
Title Previtamin D3 with a trans-fused decalin CD-ring has pronounced genomic activity.
Journal J Biol Chem
Abstract Deletion of C19 in the structure of 1 alpha,25-dihydroxyvitamin D3 [1,25(OH)2D3] does not substantially alter the biological potency but prevents the conversion between the vitamin and the previtamin form. Hence, this modification allows the study of locked previtamin and vitamin forms. The locked 19-nor-1,25(OH)2-previtamin D3 analog (19-nor-previtamin D) had a low biological activity and was a rather weak activator of the genomic signal transduction pathway. 19-Nor-trans-decalin-1,25(OH)2-vitamin D3 (19-nor-TD-vitamin D), characterized by the presence of a trans-fused decalin CD-ring system, was 10-fold more potent than the parent compound and was a potent activator of the genomic signal transduction pathway. Surprisingly, the previtamin, 19-nor-trans-decalin-1,25(OH)2-previtamin D3 (19-nor-TD-previtamin D), was as potent as 1,25(OH)2D3 in inhibiting cell proliferation and inducing cell differentiation and represents the first previtamin structure with pronounced vitamin D-like activity. Furthermore, this compound interacted as efficiently as 1,25(OH)2D3 with the vitamin D receptor (VDR), retinoid X receptor (RXR), coactivators, and DNA, which illustrated its potent ability to activate the genomic signal transduction pathway. Analysis of the transactivation potency of 12 VDR point mutants after stimulation with 19-nor-TD-previtamin D revealed that this analog used the same contact points within the receptor as did 1,25(OH)2D3. This could be confirmed by modeling analysis of this compound in the ligand binding pocket of VDR. In conclusion, a previtamin D3 analog is presented with genomic activities equivalent to 1,25(OH)2D3.
Volume 278(37)
Pages 35476-82
Published 2003-9-12
DOI 10.1074/jbc.M302045200
PII S0021-9258(20)83610-2
PMID 12829710
MeSH Amino Acid Substitution Analysis of Variance Animals COS Cells Cell Division / drug effects Chlorocebus aethiops Cholecalciferol / analogs & derivatives* Cholecalciferol / chemistry* Cholecalciferol / pharmacology* Dimerization Gene Expression Regulation / drug effects* Humans Molecular Conformation Mutagenesis, Site-Directed Point Mutation Protein Conformation Receptors, Calcitriol / chemistry Receptors, Calcitriol / drug effects Receptors, Calcitriol / genetics* Receptors, Retinoic Acid / chemistry Receptors, Retinoic Acid / drug effects Receptors, Retinoic Acid / genetics* Recombinant Fusion Proteins / drug effects Recombinant Fusion Proteins / metabolism Retinoid X Receptors Structure-Activity Relationship Swine Transcription Factors / chemistry Transcription Factors / drug effects Transcription Factors / genetics* Transcriptional Activation / drug effects
IF 4.238
Times Cited 17
WOS Category BIOCHEMISTRY & MOLECULAR BIOLOGY
Resource
Human and Animal Cells MC3T3-E1(RCB1126)