M. Shou et al., A kinetic model for the metabolic interaction of two substrates at the active site of cytochrome P450 3A4, J BIOL CHEM, 276(3), 2001, pp. 2256-2262
In many cases, CYP3A4 exhibits unusual kinetic characteristics that result
from the metabolism of multiple substrates that coexist at the active site.
In the present study, we observed that alpha -naphthoflavone (alpha -NF) e
xhibited a differential effect on CYP3A4 mediated product formation as show
n by an increase and decrease, respectively, of the carboxylic acid (P-2) a
nd omega -3-hydroxylated (P-1) metabolites of losartan, while losartan was
found to be an inhibitor of the formation of the 5,6-epoxide of alpha -NF.
Thus, to address this problem, a kinetic model was developed on the assumpt
ion that CYP3A4 can accommodate two distinct and independent binding domain
s for the substrates within the active site, and the resulting velocity equ
ations were employed to predict the kinetic parameters for all possible enz
yme-substrate species. Our results indicate that the predicted values had a
good fit with the experimental observations. Therefore, the kinetic consta
nts can be used to adequately describe the nature of the metabolic interact
ion between the two substrate. Applications of the model provide some new i
nsights into the mechanism of drug-drug interactions at the level of CYP3A4
.