Literature DB >> 8561495

Roles of cytochrome b5 in the oxidation of testosterone and nifedipine by recombinant cytochrome P450 3A4 and by human liver microsomes.

H Yamazaki1, M Nakano, Y Imai, Y F Ueng, F P Guengerich, T Shimada.   

Abstract

NADH-dependent testosterone 6 beta-hydroxylation and nifedipine oxidation activities could be reconstituted in systems containing cytochrome b5 (b5), NADH-b5 reductase, and bacterial recombinant cytochrome P450 (P450) 3A4 with a synthetic phospholipid mixture, cholate, MgCl2, and reduced glutathione. Replacement of NADH-b5 reductase with NADPH-P450 reductase produced an eightfold increase in testosterone 6 beta-hydroxylation activity. Further stimulation could be obtained when NADPH was used as an electron donor instead of NADH. Removal of b5 from the NADH- and NADPH-supported systems caused a 90% loss of testosterone 6 beta-hydroxylation activities in the presence of NADPH-P450 reductase but resulted in complete loss of the activities in the absence of NADPH-P450 reductase. These results suggested that about 10% of the activities was due to electron flow from NADPH-P450 reductase to P450 3A4 in the absence of b5. In the presence of testosterone and MgCl2, P450 3A4 was reduced by b5 and NADH-b5 reductase, although the rate of P450 3A4 reduction was much slower than that by NADPH-P450 reductase. Anti-human b5 immunoglobulin G (IgG) (purified using rabbit b5 affinity chromatography) inhibited testosterone 6 beta-hydroxylation activity catalyzed by human liver microsomes more strongly in NADH- than in NADPH-supported reactions. However, anti-rat NADPH-P450 reductase IgG inhibited microsomal activities in both NADH- and NADPH-supported systems to similar extents. Addition of NADH enhanced NADPH-supported testosterone and nifedipine oxidations in human liver microsomes. MgCl2 stimulated rates of reduction of b5 by NADPH-P450 reductase, but not by NADH-b5 reductase, in reconstituted systems. These results suggest that b5 is an essential component in P450 3A4-catalyzed testosterone hydroxylation and nifedipine oxidation in human liver microsomes. Our previous observation that rates of reduction of ferric P450 3A4 by NADPH-P450 reductase are accelerated by complexation with substrates and b5 is supported in this study.

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Year:  1996        PMID: 8561495     DOI: 10.1006/abbi.1996.0022

Source DB:  PubMed          Journal:  Arch Biochem Biophys        ISSN: 0003-9861            Impact factor:   4.013


  15 in total

Review 1.  The interaction of microsomal cytochrome P450 2B4 with its redox partners, cytochrome P450 reductase and cytochrome b(5).

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Journal:  Arch Biochem Biophys       Date:  2010-11-03       Impact factor: 4.013

2.  Heme-thiolate sulfenylation of human cytochrome P450 4A11 functions as a redox switch for catalytic inhibition.

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3.  Two surfaces of cytochrome b5 with major and minor contributions to CYP3A4-catalyzed steroid and nifedipine oxygenation chemistries.

Authors:  Hwei-Ming Peng; Richard J Auchus
Journal:  Arch Biochem Biophys       Date:  2013-11-17       Impact factor: 4.013

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5.  Sulfenylation of Human Liver and Kidney Microsomal Cytochromes P450 and Other Drug-Metabolizing Enzymes as a Response to Redox Alteration.

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8.  Effect of Cytochrome b5 Content on the Activity of Polymorphic CYP1A2, 2B6, and 2E1 in Human Liver Microsomes.

Authors:  Haifeng Zhang; Na Gao; Tingting Liu; Yan Fang; Bing Qi; Qiang Wen; Jun Zhou; Linjing Jia; Hailing Qiao
Journal:  PLoS One       Date:  2015-06-05       Impact factor: 3.240

9.  Heterologous expression of equine CYP3A94 and investigation of a tunable system to regulate co-expressed NADPH P450 oxidoreductase levels.

Authors:  Ramona Dettwiler; Andrea L Schmitz; Philippe Plattet; Jana Zielinski; Meike Mevissen
Journal:  PLoS One       Date:  2014-11-21       Impact factor: 3.240

10.  Cytochrome b 5 Binds Tightly to Several Human Cytochrome P450 Enzymes.

Authors:  Donghak Kim; Vitchan Kim; Yasuhiro Tateishi; F Peter Guengerich
Journal:  Drug Metab Dispos       Date:  2021-07-30       Impact factor: 3.579

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