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卤代烯醇内酯。α-胰凝乳蛋白酶的强效酶激活不可逆抑制剂。

Haloenol lactones. Potent enzyme-activated irreversible inhibitors for alpha-chymotrypsin.

作者信息

Daniels S B, Cooney E, Sofia M J, Chakravarty P K, Katzenellenbogen J A

出版信息

J Biol Chem. 1983 Dec 25;258(24):15046-53.

PMID:6654902
Abstract

Haloenol lactones can act as enzyme-activated irreversible inhibitors for alpha-chymotrypsin: acyl transfer to the active site serine releases a halomethyl ketone that remains tethered in the active site during the lifetime of the acyl enzyme, poised to alkylate an accessible nucleophilic residue. To investigate the structural determinants for chymotrypsin suicide inactivation with haloenol lactones, we prepared a series of nine lactones, differing in ring size (6-membered valerolactones and 5-membered butyrolactones) and in the nature of the aromatic substituent (phenyl and alpha-naphthyl), and the halogen (bromine and iodine). The inactivating behavior of these lactones is characterized by a binding constant (Ki) and three rate constants, for inactivation (k2), catalytic hydrolysis (kc), and spontaneous hydrolysis (kh). The six-membered valerolactones were much more potent inactivators than the butyrolactones, having both higher affinity and more rapid inactivation; the alpha-naphthyl-substituted lactones were also more effective, but the nature of the halogen had relatively little effect. The spontaneous rate of hydrolysis of all of these lactones is low. The turnovers per inactivation of these lactones vary from 91-1.7, with some of the alpha-naphthyl-substituted lactones approaching ideal behavior (stoichiometric inactivation). These studies indicate that several haloenol lactones are effective enzyme-activated irreversible inhibitors of chymotrypsin, and that their potency and efficiency depends markedly upon certain structural features of the lactone system.

摘要

卤代烯醇内酯可作为α-胰凝乳蛋白酶的酶激活不可逆抑制剂:酰基转移至活性位点丝氨酸会释放出一种卤甲基酮,在酰基酶的存在期间,该卤甲基酮会一直束缚在活性位点,随时准备烷基化一个可及的亲核残基。为了研究用卤代烯醇内酯使胰凝乳蛋白酶自杀失活的结构决定因素,我们制备了一系列九种内酯,它们在环大小(六元戊内酯和五元丁内酯)、芳香取代基的性质(苯基和α-萘基)以及卤素(溴和碘)方面存在差异。这些内酯的失活行为由一个结合常数(Ki)和三个速率常数来表征,分别是失活速率常数(k2)、催化水解速率常数(kc)和自发水解速率常数(kh)。六元戊内酯作为失活剂比丁内酯有效得多,具有更高的亲和力和更快的失活速度;α-萘基取代的内酯也更有效,但卤素的性质影响相对较小。所有这些内酯的自发水解速率都很低。这些内酯每次失活的周转数在91至1.7之间变化,一些α-萘基取代的内酯接近理想行为(化学计量失活)。这些研究表明,几种卤代烯醇内酯是有效的胰凝乳蛋白酶酶激活不可逆抑制剂,它们的效力和效率明显取决于内酯系统的某些结构特征。

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J Biol Chem. 1983 Dec 25;258(24):15046-53.
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