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巯基胺对微粒体氨肽酶特异性抑制的结构要求

Structural requirements for specific inhibition of microsomal aminopeptidase by mercaptoamines.

作者信息

Pickering D S, Krishna M V, Miller D C, Chan W W

出版信息

Arch Biochem Biophys. 1985 Jun;239(2):368-74. doi: 10.1016/0003-9861(85)90701-5.

Abstract

L-Leucinthiol, a synthetic derivative of mercaptoethylamine with a hydrophobic side chain, was recently reported to be a potent inhibitor of microsomal aminopeptidase. The structural features necessary for interaction of mercaptoamines with this enzyme have now been explored more systematically. Optimal binding requires a primary amine linked to the mercapto group via two carbon atoms. Only a substituent with L-configuration at the 1 position increased the affinity toward the enzyme. The high degree of specificity and other evidence suggest that the mode of binding of these inhibitors is similar to that of substrates. Comparison of leucinthiol with other amino compounds suggest that the mercapto group makes a much greater contribution to the binding than the hydrophobic side chain. L-Leucinthiol is fairly specific for aminopeptidase although some inhibition of thermolysin and carboxypeptidase A is observed.

摘要

L-亮氨硫醇是一种带有疏水侧链的巯基乙胺合成衍生物,最近有报道称它是微粒体氨肽酶的一种强效抑制剂。巯基胺与该酶相互作用所需的结构特征现已得到更系统的探索。最佳结合需要通过两个碳原子与巯基相连的伯胺。只有在1位具有L-构型的取代基才能增加对该酶的亲和力。高度的特异性和其他证据表明,这些抑制剂的结合模式与底物相似。亮氨硫醇与其他氨基化合物的比较表明,巯基对结合的贡献比疏水侧链大得多。L-亮氨硫醇对氨肽酶相当特异,尽管观察到对嗜热菌蛋白酶和羧肽酶A有一些抑制作用。

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