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Vol. 26, Issue 10, 1026-1030, October 1998
Department of Pharmacology and Toxicology, College of Pharmacy,
University of Arizona (Y.K., S.M.S., J.R.H.);
Department of
Pharmacology, Tulane Medical School (N.E.H.); and
Department of
Chemistry,Tulane University (W.L.A.)
Cytochrome P450 2B1 clones were isolated from a
phenobarbital-induced Wistar-Kyoto (WKY) hepatic cDNA library and were
found to contain a Glu-322
Val substitution, compared with
wild-type 2B1 from Sprague-Dawley rats. After heterologous expression
in Escherichia coli and purification, activities of this
2B1 E322V variant were determined for ethoxycoumarin and
androstenedione. The total activities and metabolite profiles did not
differ between 2B1 E322V and wild-type 2B1 for these substrates. In
addition, similar rate constants of inactivation were observed with the mechanism-based inactivators chloramphenicol,
N-(2-p-nitrophenethyl)chlorofluoroacetamide, and 9-ethynylphenanthrene. These results suggest that the Glu-322
Val alteration in the 2B1 WKY variant does not significantly affect 2B1
activity. However, another clone obtained from the cDNA library
contained two additional substitutions: Val-103
Ala and Glu-424
Lys. As residue 103 is within a predicted substrate recognition site
(SRS-1), it was of interest to determine whether the Val
Ala
substitution conferred any unique catalytic activities on 2B1. No
differences in the metabolism of ethoxycoumarin or androstenedione were
observed. However, the Val-103
Ala alteration caused an
approximately threefold decrease in the rate constant of inactivation
for 9-ethynylphenanthrene in comparison with either 2B1 E322V or
wild-type 2B1. Based on computer modeling, residue 103 is predicted to
be near the active site but at a distance greater than 5Å from
9-ethynylphenanthrene. Our results suggest that the Val-103
Ala
alteration may have an indirect influence on the susceptibility of P450
2B1 to mechanism-based inactivators.
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S. Kumar, E. E. Scott, H. Liu, and J. R. Halpert A Rational Approach to Re-engineer Cytochrome P450 2B1 Regioselectivity Based on the Crystal Structure of Cytochrome P450 2C5 J. Biol. Chem., May 2, 2003; 278(19): 17178 - 17184. [Abstract] [Full Text] [PDF] |
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