4.6 Article

Conformational selection dominates binding of steroids to human cytochrome P450 17A1

期刊

JOURNAL OF BIOLOGICAL CHEMISTRY
卷 294, 期 26, 页码 10028-10041

出版社

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.RA119.008860

关键词

cytochrome P450; steroidogenesis; enzyme kinetics; pre-steady-state kinetics; conformational change; androgen; conformational selection; CYP17A1; induced-fit binding; P450 17A1; pregnenolone; steroid

资金

  1. National Institutes of Health [R01 GM118122, T32 ES007028]

向作者/读者索取更多资源

Cytochrome P450 (P450, CYP) enzymes are the major catalysts involved in the oxidation of steroids as well as many other compounds. Their versatility has been explained in part by flexibility of the proteins and complexity of the binding mechanisms. However, whether these proteins bind their substrates via induced fit or conformational selection is not understood. P450 17A1 has a major role in steroidogenesis, catalyzing the two-step oxidations of progesterone and pregnenolone to androstenedione and dehydroepiandrosterone, respectively, via 17 alpha-hydroxy (OH) intermediates. We examined the interaction of P450 17A1 with its steroid substrates by analyzing progress curves (UV-visible spectroscopy), revealing that the rates of binding of any of these substrates decreased with increasing substrate concentration, a hallmark of conformational selection. Further, when the concentration of 17 alpha-OH pregnenolone was held constant and the P450 concentration increased, the binding rate increased, and such opposite patterns are also diagnostic of conformational selection. Kinetic simulation modeling was also more consistent with conformational selection than with an induced-fit mechanism. Cytochrome b(5) partially enhances P450 17A1 lyase activity by altering the P450 17A1 conformation but did not measurably alter the binding of 17 alpha-OH pregnenolone or 17 alpha-OH progesterone, as judged by the apparent K-d and binding kinetics. The P450 17A1 inhibitor abiraterone also bound to P450 17A1 in a multistep manner, and modeling indicated that the selective inhibition of the two P450 17A1 steps by the drug orteronel can be rationalized only by a multiple-conformation model. In conclusion, P450 17A1 binds its steroid substrates via conformational selection.

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