Issue 35, 2021

Effects of fluorine substitution on substrate conversion by cytochromes P450 17A1 and 21A2

Abstract

Cytochromes P450 17A1 (CYP7A1) and 21A2 (CYP21A2) catalyze key reactions in the production of steroid hormones, including mineralocorticoids, glucocorticoids, and androgens. With the ultimate goal of designing probes that are selectively metabolized to each of these steroid types, fluorinated derivatives of the endogenous substrates, pregnenolone and progesterone, were prepared to study the effects on CYP17A1 and CYP21A2 activity. In the functional assays, the hydroxylase reactions catalysed by each of these enzymes were blocked when fluorine was introduced at the site of metabolism (positions 17 and 21 of the steroid core, respectively). CYP17A1, furthermore, performed the 17,20-lyase reaction on substrates with a fluorine installed at the 21-position. Importantly, none of the substitutions examined herein prevented compound entry into the active sites of either CYP17A1 or CYP21A2 as demonstrated by spectral binding assays. Taken together, the results suggest that fluorine might be used to redirect the metabolic pathways of pregnenolone and progesterone to specific types of steroids.

Graphical abstract: Effects of fluorine substitution on substrate conversion by cytochromes P450 17A1 and 21A2

Supplementary files

Article information

Article type
Paper
Submitted
18 Jun 2021
Accepted
12 Aug 2021
First published
25 Aug 2021

Org. Biomol. Chem., 2021,19, 7664-7669

Author version available

Effects of fluorine substitution on substrate conversion by cytochromes P450 17A1 and 21A2

C. D. Vogt, A. G. Bart, R. Yadav, E. E. Scott and J. Aubé, Org. Biomol. Chem., 2021, 19, 7664 DOI: 10.1039/D1OB01178B

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