Auchus Richard J, Sampath Kumar A, Andrew Boswell C, Gupta Manisha K, Bruce Kristen, Rath Nigam P, Covey Douglas F
Division of Endocrinology and Metabolism, Department of Internal Medicine, University of Texas Southwestern Medical Center, 5323 Harry Hines Bovlevard, Dallas 75390-8857, USA.
Arch Biochem Biophys. 2003 Jan 1;409(1):134-44. doi: 10.1016/s0003-9861(02)00491-5.
Human cytochrome P450c17 (17alpha-hydroxylase, 17,20-lyase) (CYP17) and cytochrome P450c21 (21-hydroxylase) (CYP21) differ by only 14 amino acids in length and share 29% amino acid identity. Both enzymes hydroxylate progesterone at carbon atoms that lie only 2.6A apart, but CYP17 also metabolizes other steroids and demonstrates additional catalytic activities. To probe the active site topologies of these related enzymes, we synthesized the enantiomer of progesterone and determined if ent-progesterone is a substrate or inhibitor of CYP17 and CYP21. Neither enzyme metabolizes ent-progesterone; however, ent-progesterone is a potent competitive inhibitor of CYP17 (K(I)=0.2 microM). The ent-progesterone forms a type I difference spectrum with CYP17, but molecular dynamics simulations suggest different binding orientations for progesterone and its enantiomer. The ent-progesterone also inhibits CYP21, with weaker affinity than for CYP17. We conclude that CYP17 accommodates the stereochemically unnatural ent-progesterone better than CYP21. Enantiomeric steroids can be used to probe steroid binding sites, and these compounds may be effective inhibitors of steroid biosynthesis.
人细胞色素P450c17(17α-羟化酶,17,20-裂解酶)(CYP17)和细胞色素P450c21(21-羟化酶)(CYP21)在长度上仅相差14个氨基酸,氨基酸同源性为29%。这两种酶都能使仅相距2.6埃的碳原子上的孕酮发生羟基化反应,但CYP17还能代谢其他类固醇并具有额外的催化活性。为了探究这些相关酶的活性位点拓扑结构,我们合成了孕酮的对映体,并确定对映体孕酮是否是CYP17和CYP21的底物或抑制剂。两种酶都不能代谢对映体孕酮;然而,对映体孕酮是CYP17的强效竞争性抑制剂(K(I)=0.2微摩尔)。对映体孕酮与CYP17形成I型差异光谱,但分子动力学模拟表明孕酮及其对映体的结合方向不同。对映体孕酮也抑制CYP21,但其亲和力比对映体孕酮与CYP17的亲和力弱。我们得出结论,CYP17比CYP21更能容纳立体化学上不自然的对映体孕酮。对映体类固醇可用于探究类固醇结合位点,这些化合物可能是类固醇生物合成的有效抑制剂。