Uno Tomohide, Nakano Ryosuke, Kanamaru Kengo, Takenaka Shinji, Uno Yuichi, Imaishi Hiromasa
Laboratory of Biological Chemistry, Department of Biofunctional Chemistry, Faculty of Agriculture, Kobe University, Nada-ku, Kobe, Hyogo, 657-8501, Japan.
Environmental Microbiology, Faculty of Agriculture, Kobe University, Nada-ku, Kobe, Hyogo, 657-8501, Japan.
Biopharm Drug Dispos. 2017 Nov;38(8):486-493. doi: 10.1002/bdd.2090. Epub 2017 Oct 13.
CYP2C9 is a human microsomal cytochrome P450c (CYP). Much of the variation in CYP2C9 levels and activity can be attributed to polymorphisms of this gene. Wild-type CYP2C9 and mutants were coexpressed with NADPH-cytochrome P450 reductase in Escherichia coli. The hydroxylase activities toward 7-ethoxycoumarin, flavanone and steroids were examined. Six CYP2C9 variants showed Soret peaks (450 nm) typical of P450 in reduced CO-difference spectra. CYP2C9.38 had the highest 7-ethoxycoumarin de-ethylase activity. All the CYP2C9 variants showed lower flavanone 6-hydroxylation activities than CYP2C9.1 (the wild-type). CYP2C9.38 showed higher activities in testosterone 6β-hydroxylation, progesterone 6β-/16α-hydroxylation, estrone 11α-hydroxylation and estradiol 6α-hydroxylation than CYP2C9.1. CYP2C9.40 showed higher testosterone 17-oxidase activity than CYP2C9.1; CYP2C9.8 showed higher estrone 16α-hydroxylase activity and CYP2C9.12 showed higher estrone 11α-hydroxylase activity. CYP2C9.9 and CYP2C9.10 showed similar activities to CYP2C9.1. These results indicate that the substrate specificity of CYP2C9.9 and CYP2C9.10 was not changed, but CYP2C9.8, CYP2C9.12 and CYP2C9.40 showed different substrate specificity toward steroids compared with CYP2C9.1; and especially CYP2C9.38 displayed diverse substrate specificities towards 7-ethoxycoumarin and steroids.
细胞色素P450 2C9(CYP2C9)是一种人微粒体细胞色素P450c(CYP)。CYP2C9水平和活性的大部分变异可归因于该基因的多态性。野生型CYP2C9和突变体在大肠杆菌中与NADPH-细胞色素P450还原酶共表达。检测了对7-乙氧基香豆素、黄烷酮和类固醇的羟化酶活性。六种CYP2C9变体在还原型一氧化碳差光谱中显示出P450典型的Soret峰(450nm)。CYP2C9.38具有最高的7-乙氧基香豆素脱乙基酶活性。所有CYP2C9变体的黄烷酮6-羟化活性均低于CYP2C9.1(野生型)。CYP2C9.38在睾酮6β-羟化、孕酮6β-/16α-羟化、雌酮11α-羟化和雌二醇6α-羟化方面的活性高于CYP2C9.1。CYP2C9.40的睾酮17-氧化酶活性高于CYP2C9.1;CYP2C9.8的雌酮16α-羟化酶活性较高,CYP2C9.12的雌酮11α-羟化酶活性较高。CYP2C9.9和CYP2C9.10的活性与CYP2C9.1相似。这些结果表明,CYP2C9.9和CYP2C9.10的底物特异性未改变,但与CYP2C9.1相比,CYP2C9.8、CYP2C9.12和CYP2C9.40对类固醇显示出不同的底物特异性;尤其是CYP2C9.38对7-乙氧基香豆素和类固醇表现出多样的底物特异性。