Kurosawa T, Sato M, Nakano H, Fujiwara M, Murai T, Yoshimura T, Hashimoto T
Faculty of Pharmaceutical Sciences, Health Sciences University of Hokkaido, Ishikari-Tobetsu, 061-0293, Hokkaido, Japan.
Steroids. 2001 Feb;66(2):107-14. doi: 10.1016/s0039-128x(00)00217-8.
The conjugation reactions of hydration and dehydrogenation catalyzed by the dehydratase and dehydrogenase activities of D-3-hydroxyacyl-CoA dehydratase/D-3-hydroxyacyl-CoA dehydrogenase bifunctional protein (DBP) and enoyl-CoA hydratase/3-hydroxyacyl-CoA dehydrogenase bifunctional protein (LBP) in the side chain degradation step of bile acid biosynthesis were investigated using chemically synthesized C27-bile acid CoA esters as substrates. The hydration catalyzed by DBP showed high diastereoselectivity for (24E)-3alpha,7alpha,12alpha-trihydroxy- and (24E)-3alpha,7alpha-dihydroxy-5beta-cholest-24-en-26-oyl CoA to give (24R,25R)-3alpha,7alpha,12alpha,24-tetrahydroxy- and (24R,25R)-3alpha,7alpha,24-trihydroxy-5beta-cholestan-26-oyl CoAs, respectively, and the dehydrogenation catalyzed by DBP also showed high stereospecificity for the above (24R,25R)-isomers to give 3alpha,7alpha,12alpha-trihydroxy- and 3alpha,7alpha-dihydroxy-24-oxo-5beta-cholestan-26-oyl CoAs, respectively. On the other hand, the dehydratase activity of LBP displayed a different diastereoselectivity producing the (24S,25S)-isomer, and dehydrogenase activity of LBP was stereospecific for the (24S,25R)-isomer to give the above 24-oxo-derivative. The hydration and dehydrogenation reactions catalyzed by DBP were effectively conjugated to convert (24E)-5beta-cholestenoyl CoA to 24-oxo-5beta-cholestanoyl CoA. However, the reactions catalyzed by LBP were not conjugated. These results indicate that DBP plays an important role in the biosynthesis of bile acid.
以化学合成的C27胆汁酸辅酶A酯为底物,研究了胆汁酸生物合成侧链降解步骤中,D-3-羟酰基辅酶A脱水酶/D-3-羟酰基辅酶A脱氢酶双功能蛋白(DBP)和烯酰基辅酶A水合酶/3-羟酰基辅酶A脱氢酶双功能蛋白(LBP)的脱水酶和脱氢酶活性所催化的水合和脱氢共轭反应。DBP催化的水合反应对(24E)-3α,7α,12α-三羟基-和(24E)-3α,7α-二羟基-5β-胆甾-24-烯-26-酰基辅酶A表现出高非对映选择性,分别生成(24R,25R)-3α,7α,12α,24-四羟基-和(24R,25R)-3α,7α,24-三羟基-5β-胆甾烷-26-酰基辅酶A,并且DBP催化的脱氢反应对上述(24R,25R)-异构体也表现出高立体特异性,分别生成3α,7α,12α-三羟基-和3α,7α-二羟基-24-氧代-5β-胆甾烷-26-酰基辅酶A。另一方面,LBP的脱水酶活性表现出不同的非对映选择性,生成(24S,25S)-异构体,并且LBP的脱氢酶活性对(24S,25R)-异构体具有立体特异性,生成上述24-氧代衍生物。DBP催化的水合和脱氢反应有效地共轭,将(24E)-5β-胆甾烯酰基辅酶A转化为24-氧代-5β-胆甾烷酰基辅酶A。然而,LBP催化的反应没有共轭。这些结果表明DBP在胆汁酸的生物合成中起重要作用。