Stimulation of Cytochrome P450 Reactions by Apo-cytochromeb 5
Стимуляция реакций цитохрома P450 апоцитохромом b5
2001-08-01
SCID: 54.1/n72grty9
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Apo-cytochrome b5Cytochrome P450Electron transferHeme transferTestosterone 6β-hydroxylation
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Abstract (AI)
Many cytochrome P450 (P450)-dependent reactions have been shown to be stimulated by another microsomal protein, cytochrome b(5) (b(5)). Two major explanations are (i) direct electron transfer from b(5) and (ii) a conformational effect in the absence of electron transfer. Some P450s (e.g. 3A4, 2C9, 17A, and 4A7) are stimulated by either b(5) or b(5) devoid of heme (apo-b(5)), indicating a lack of electron transfer, whereas other P450s (e.g. 2E1) are stimulated by b(5) but not by apo-b(5). Recently, a proposal has been made by Guryev et al. (Biochemistry 40, 5018-5031, 2001) that the stimulation by apo-b(5) can be explained only by transfer of heme from P450 preparations to apo-b(5), enabling electron transfer. We have repeated earlier findings of stimulation of catalytic activity of testosterone 6beta-hydroxylation activities with four P450 preparations, in which nearly all of the heme was accounted for as P450. Spectral analysis of mixtures indicated that only approximately 5% of the heme can be transferred to apo-b(5), which cannot account for the observed stimulation. The presence of the heme scavenger apomyoglobin did not inhibit the stimulation of P450 3A4-dependent testosterone or nifedipine oxidation activity. Further evidence against the presence of loosely bound P450 3A4 heme was provided in experiments with apo-heme oxygenase, in which only 3% of the P450 heme was converted to biliverdin. Finally, b(5) supported NADH-b(5) reductase/P450 3A4-dependent testosterone 6beta-hydroxylation, but apo-b(5) did not. Thus, apo-b(5) can stimulate P450 3A4 reactions as well as b(5) in the absence of electron transfer, and heme transfer from P450 3A4 to apo-b(5) cannot be used to explain the catalytic stimulation.
Key Findings
1
Apo-b5 stimulated P450 3A4 reactions without electron transfer, supporting a conformational or other non-electron-transfer mechanism.
2
Apo-cytochrome b5 stimulated P450 3A4-catalyzed testosterone and nifedipine oxidation despite lacking heme and electron-transfer capacity.
3
Apo-heme oxygenase converted only 3% of P450 3A4 heme to biliverdin, providing further evidence against substantial heme release.
4
Apomyoglobin did not inhibit apo-b5-mediated stimulation, arguing against loosely bound P450 heme as its mechanism.
5
Only approximately 5% of P450-associated heme transferred to apo-b5, insufficient to explain the observed catalytic stimulation.
Research Object
Cytochrome P450 3A4 reactions stimulated by cytochrome b5 or apo-cytochrome b5
Research Subject
The mechanism of catalytic stimulation, specifically whether it involves electron transfer or heme transfer from P450 3A4 to apo-cytochrome b5
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2001-08-01
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