Dayal B, Ertel N H
Medical Service, Department of Veterans Affairs Medical Center, East Orange, New Jersey 07018, USA.
Lipids. 1998 Mar;33(3):333-8. doi: 10.1007/s11745-998-0213-y.
In recent years, defects of bile acid synthesis caused by disorders of peroxisome biogenesis have led to increased interest in C27 bile acids. In humans, while the majority of bile acids are C24 carboxylic acids, the presence of increased concentrations of C27 bile acids and their metabolites in hereditary diseases associated with peroxisomal dysfunction can serve as a useful marker for the intensity of the metabolic disorder. Our present studies describe an efficient method for the rapid hydrolysis of C27 and C24 bile acid conjugates using a commercial microwave oven. The advantages of this method include freedom from racemization, minimal activation, mild reaction conditions, and the highly stereocontrolled nature of the reaction, thus allowing for free bile acid recovery in high yield. For example, when (25R) 3 alpha,7 alpha,12 alpha-trihydroxy-5 beta-cholestan-26-oyl taurine, a major compound present in the bile of Alligator mississippiensis, was deconjugated with 4% NaOH/diethylene glycol or 1 M LiOH/propylene glycol in the microwave oven for 4-6 min, 3 alpha,7 alpha,12 alpha-trihydroxy-5 beta-cholestan-26-oic acid (THCA) was obtained in 81% yield with retention of configuration at C-25. It is suggested that present studies will be helpful in delineating the absolute stereochemistry of 3 alpha,7 alpha,12 alpha-trihydroxy-5 beta-cholestanoyl-CoA oxidase, the peroxisomal enzyme that catalyzes the first step in the oxidation of THCA.
近年来,过氧化物酶体生物发生紊乱导致的胆汁酸合成缺陷引发了人们对C27胆汁酸的更多关注。在人类中,虽然大多数胆汁酸是C24羧酸,但在与过氧化物酶体功能障碍相关的遗传性疾病中,C27胆汁酸及其代谢物浓度的增加可作为代谢紊乱强度的有用标志物。我们目前的研究描述了一种使用商用微波炉快速水解C27和C24胆汁酸共轭物的有效方法。该方法的优点包括无消旋化、最小活化、温和的反应条件以及反应的高度立体控制性质,从而能够以高收率回收游离胆汁酸。例如,当密西西比鳄胆汁中的主要化合物(25R)3α,7α,12α-三羟基-5β-胆甾烷-26-酰牛磺酸在微波炉中用4% NaOH/二甘醇或1 M LiOH/丙二醇进行脱共轭反应4-6分钟时,以81%的收率获得了3α,7α,12α-三羟基-5β-胆甾烷-26-酸(THCA),且C-25位的构型得以保留。有人认为,目前的研究将有助于确定3α,7α,12α-三羟基-5β-胆甾酰辅酶A氧化酶的绝对立体化学,该酶是催化THCA氧化第一步的过氧化物酶体酶。