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β-羟基正亮氨酸:其异构体的分离及生物学研究

Beta-hydroxynorleucine: separation of its isomers and biological studies.

作者信息

Otani T T, Briley M R

出版信息

J Pharm Sci. 1976 Apr;65(4):534-7. doi: 10.1002/jps.2600650414.

Abstract

Separation of the four isomers of beta-hydroxynorleucine was accomplished by partition column chromatography and asymmetric enzymatic hydrolysis of the N-chloroacetyl derivatives. From these, the corresponding N-chloroacetyl derivatives were made. The purity and configuration of each isomer of the free acid and N-chloroacetylated derivative were ascertained by: (a) paper chromatography in five solvent systems, (b) elemental analysis, (c) Van Slyke nitrous acid determination of alpha-carbonyl carbon, and (d) Van Slyke ninhydrin determination of alpha-carbonyl carbon, and (e) optical rotation. Comparison of the rate of enzymatic hydrolysis by hog renal acylase I of the N-chloroacetyl derivative of the L-isomers of each diastereomer showed that the acyl B isomer is a better substrate than the acyl A isomer, where A denotes the faster moving diastereomer and B denotes the slower moving diastereomer in a defined chromatographic solvent system. Microbiological assay using Lactobacillus casei in a system selected for screening for possible antitumor activity indicated that while none of the isomers as free amino acids had any growth inhibitory action, the N-acylated isomers showed modest but significant activity. The N-chloroacetyl derivative of the D-enantiomorph of diastereomer B exhibited the greatest growth inhibitory activity, showing about twice the activity of the other three isomers.

摘要

通过分配柱色谱法和N - 氯乙酰基衍生物的不对称酶促水解实现了β - 羟基正亮氨酸四种异构体的分离。由此制备了相应的N - 氯乙酰基衍生物。通过以下方法确定游离酸和N - 氯乙酰化衍生物的每种异构体的纯度和构型:(a) 在五种溶剂系统中的纸色谱法,(b) 元素分析,(c) 用范斯莱克亚硝酸法测定α - 羰基碳,(d) 用范斯莱克茚三酮法测定α - 羰基碳,以及(e) 旋光度。比较每种非对映异构体的L - 异构体的N - 氯乙酰基衍生物被猪肾酰基转移酶I酶促水解的速率,结果表明酰基B异构体比酰基A异构体是更好的底物,其中A表示在特定色谱溶剂系统中移动较快的非对映异构体,B表示移动较慢的非对映异构体。在选择用于筛选可能的抗肿瘤活性的系统中使用干酪乳杆菌进行微生物测定表明,虽然作为游离氨基酸的异构体均没有任何生长抑制作用,但N - 酰化异构体显示出适度但显著的活性。非对映异构体B的D - 对映体的N - 氯乙酰基衍生物表现出最大的生长抑制活性,其活性约为其他三种异构体的两倍。

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