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Regio- and stereoselective oxidation of propranolol enantiomers by human CYP2D6, cynomolgus monkey CYP2D17 and marmoset CYP2D19
Authors:Narimatsu Shizuo  Nakata Toshiyuki  Shimizudani Takeshi  Nagaoka Kenjiro  Nakura Hironori  Masuda Kazufumi  Katsu Takashi  Koeda Akiko  Naito Shinsaku  Yamano Shigeru  Miyata Atsuro  Hanioka Nobumitsu
Affiliation:aGraduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University, 1-1-1 Tsushima-naka, Kita-ku, Okayama 700-8530, Japan;bSchool of Pharmacy, Shujitsu University, 1-6-1 Nishigawara, Naka-ku, Okayama 703-8516, Japan;cIna Research Inc., 1248-188 Nishiminowa, Ina, Nagano 399-4501, Japan;dOtsuka Pharmaceutical Factory Inc., Naruto, Tokushima 772-8601, Japan;eFaculty of Pharmaceutical Sciences, Fukuoka University, 8-19-1 Nanakuma, Jonan-ku, Fukuoka 814-0180, Japan;fKagoshima University, Graduate School of Medicine and Dentistry, 8-35-1 Sakuragaoka, Kagoshima 890-8520, Japan
Abstract:Toxic and pharmacokinetic profiles of drug candidates are evaluated in vivo often using monkeys as experimental animals, and the data obtained are extrapolated to humans. Well understanding physiological properties, including drug-metabolizing enzymes, of monkeys should increase the accuracy of the extrapolation. The present study was performed to compare regio- and stereoselectivity in the oxidation of propranolol (PL), a chiral substrate, by cytochrome P450 2D (CYP2D) enzymes among humans, cynomolgus monkeys and marmosets. Complimentary DNAs encoding human CYP2D6, cynomolgus monkey CYP2D17 and marmoset CYP2D19 were cloned, and their proteins expressed in a yeast cell expression system. The regio- and stereoselective oxidation of PL enantiomers by yeast cell microsomal fractions were compared. In terms of efficiency of expression in the system, the holo-proteins ranked CYP2D6 ≒ CYP2D17 ? CYP2D19. This may be caused by the bulky side chain of the amino acid residue at position 119 (leucine for CYP2D19 vs. valine for CYP2D6 and CYP2D17), which can disturb the incorporation of the heme moiety into the active-site cavity. PL enantiomers were oxidized by all of the enzymes mainly into 4-hydroxyproranolol (4-OH-PL), followed by 5-OH-PL and N-desisopropylpropranolol (NDP). In the kinetic analysis, apparent Km values were commonly in the μM range and substrate enantioselectivity of R-PL < S-PL was observed in both Km and Vmax values for the formation of the three metabolites from PL enantiomers. The activity to produce NDP tended to be higher for the monkey enzymes, particularly CYP2D17, than for the human enzyme. These results indicate that in the oxidation of PL enantiomers by CYP2D enzymes, stereoselectivity is similar but regioselectivity is different between humans and monkeys.
Keywords:Abbreviations: CYP, cytochrome P450   PL, propranolol   X-OH-PL, X-hydroxypropranolol   NDP, N-desisopropylpropranolol   4-OH-BTL, 4-hydroxybunitrolol   PVDF, polyvinylidene difluoride   PCR, polymerase chain reaction   SRS, substrate recognition site
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