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Use of vitamin D4 analogs to investigate differences in hepatic and target cell metabolism of vitamins D2 and D3
Authors:Valarie Byford  Stephen Strugnell  Ruth Coldwell  Neil Schroeder  Hugh LJ Makin  Joyce C Knutson  Charles W Bishop  Glenville Jones
Institution:1. Department of Biochemistry, Queen''s University, Kingston, Ontario, Canada K7L 3N6;2. Department of Medicine, Queen''s University, Kingston, Ontario, Canada K7L 3N6;3. Bone Care International, Middleton, WI 53562, USA;4. Department of Clinical Biochemistry, St. Bartholomew''s and the Royal London School of Medicine and Dentistry, London E1 2AD, UK
Abstract:In this study, we used molecules with either of the structural differences in the side chains of vitamin D2 and vitamin D3 to investigate which feature is responsible for the significant differences in their respective metabolism, pharmacokinetics and toxicity. We used two cell model systems—HepG2 and HPK1A-ras—to study hepatic and target cell metabolism, respectively. Studies with HepG2 revealed that the pattern of 24- and 26-hydroxylation of the side chain reported for 1α-hydroxyvitamin D2 (1α-OH-D2) but not for 1α-OH-D3 is also observed in both 1α-OH-D4 and Δ22-1α-OH-D3 metabolism. This suggests that the structural feature responsible for targeting the enzyme to the C24 or C26 site could be either the C24 methyl group or the 22–23 double bond. In HPK1A-ras cells, the pattern of metabolism observed for the 24-methylated derivative, 1α,25-(OH)2D4, was the same pattern of multiple hydroxylations at C24, C26 and C28 seen for vitamin D2 compounds without evidence of side chain cleavage observed for vitamin D3 derivatives, suggesting that the C24 methyl group plays a major role in this difference in target cell metabolism of D2 and D3 compounds. Novel vitamin D4 compounds were tested and found to be active in a variety of in vitro biological assays. We conclude that vitamin D4 analogs and their metabolites offer valuable insights into vitamin D analog design, metabolic enzymes and maybe useful clinically.
Keywords:Vitamin D-dependent genes  hydroxy or dihydroxy  BSA  bovine serum albumin  DBP  vitamin D-binding globulin  DMEM  Dulbecco's modified Eagle's medium  DPPD  GH  growth hormone  HIM  hexane/isopropanol/methanol  HPLC  high-performance liquid chromatography  VDR  vitamin D receptor  VDRE  vitamin D responsive element
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