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PUBMED FOR HANDHELDS

Journal Abstract Search


311 related items for PubMed ID: 21677063

  • 1. Production of 22-hydroxy metabolites of vitamin d3 by cytochrome p450scc (CYP11A1) and analysis of their biological activities on skin cells.
    Tuckey RC, Li W, Shehabi HZ, Janjetovic Z, Nguyen MN, Kim TK, Chen J, Howell DE, Benson HA, Sweatman T, Baldisseri DM, Slominski A.
    Drug Metab Dispos; 2011 Sep; 39(9):1577-88. PubMed ID: 21677063
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  • 6. Pathways and products for the metabolism of vitamin D3 by cytochrome P450scc.
    Tuckey RC, Li W, Zjawiony JK, Zmijewski MA, Nguyen MN, Sweatman T, Miller D, Slominski A.
    FEBS J; 2008 May; 275(10):2585-96. PubMed ID: 18410379
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  • 7. An alternative pathway of vitamin D metabolism. Cytochrome P450scc (CYP11A1)-mediated conversion to 20-hydroxyvitamin D2 and 17,20-dihydroxyvitamin D2.
    Slominski A, Semak I, Wortsman J, Zjawiony J, Li W, Zbytek B, Tuckey RC.
    FEBS J; 2006 Jul; 273(13):2891-901. PubMed ID: 16817851
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  • 8. Purified mouse CYP27B1 can hydroxylate 20,23-dihydroxyvitamin D3, producing 1alpha,20,23-trihydroxyvitamin D3, which has altered biological activity.
    Tang EK, Li W, Janjetovic Z, Nguyen MN, Wang Z, Slominski A, Tuckey RC.
    Drug Metab Dispos; 2010 Sep; 38(9):1553-9. PubMed ID: 20554701
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  • 9. Investigation of 20S-hydroxyvitamin D3 analogs and their 1α-OH derivatives as potent vitamin D receptor agonists with anti-inflammatory activities.
    Lin Z, Marepally SR, Goh ESY, Cheng CYS, Janjetovic Z, Kim TK, Miller DD, Postlethwaite AE, Slominski AT, Tuckey RC, Peluso-Iltis C, Rochel N, Li W.
    Sci Rep; 2018 Jan 24; 8(1):1478. PubMed ID: 29367669
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  • 11. Metabolism of 20-hydroxyvitamin D3 and 20,23-dihydroxyvitamin D3 by rat and human CYP24A1.
    Tieu EW, Li W, Chen J, Kim TK, Ma D, Slominski AT, Tuckey RC.
    J Steroid Biochem Mol Biol; 2015 May 24; 149():153-65. PubMed ID: 25727742
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  • 14. In vivo evidence for a novel pathway of vitamin D₃ metabolism initiated by P450scc and modified by CYP27B1.
    Slominski AT, Kim TK, Shehabi HZ, Semak I, Tang EK, Nguyen MN, Benson HA, Korik E, Janjetovic Z, Chen J, Yates CR, Postlethwaite A, Li W, Tuckey RC.
    FASEB J; 2012 Sep 24; 26(9):3901-15. PubMed ID: 22683847
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  • 16. Clonal differences in expression of 25-hydroxyvitamin D(3)-1alpha-hydroxylase, of 25-hydroxyvitamin D(3)-24-hydroxylase, and of the vitamin D receptor in human colon carcinoma cells: effects of epidermal growth factor and 1alpha,25-dihydroxyvitamin D(3).
    Bareis P, Kállay E, Bischof MG, Bises G, Hofer H, Pötzi C, Manhardt T, Bland R, Cross HS.
    Exp Cell Res; 2002 Jun 10; 276(2):320-7. PubMed ID: 12027461
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  • 17. Evidence for 1,25-dihydroxyvitamin D3-independent transactivation by the vitamin D receptor: uncoupling the receptor and ligand in keratinocytes.
    Ellison TI, Eckert RL, MacDonald PN.
    J Biol Chem; 2007 Apr 13; 282(15):10953-62. PubMed ID: 17310066
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  • 18. Products of vitamin D3 or 7-dehydrocholesterol metabolism by cytochrome P450scc show anti-leukemia effects, having low or absent calcemic activity.
    Slominski AT, Janjetovic Z, Fuller BE, Zmijewski MA, Tuckey RC, Nguyen MN, Sweatman T, Li W, Zjawiony J, Miller D, Chen TC, Lozanski G, Holick MF.
    PLoS One; 2010 Mar 26; 5(3):e9907. PubMed ID: 20360850
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  • 20. C-6 functionalized analogs of 25-hydroxyvitamin D3 and 1alpha,25-dihydroxyvitamin D3: synthesis and binding analysis with vitamin D-binding protein and vitamin D receptor.
    Addo JK, Swamy N, Ray R.
    Steroids; 1999 Apr 26; 64(4):273-82. PubMed ID: 10399884
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