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耶罗尼酶III的纯化与特性分析。与之前从耶罗尼凤梨(Bromelia hieronymi Mez)中分离出的其他蛋白酶的比较。

Purification and characterization of hieronymain III. Comparison with other proteases previously isolated from Bromelia hieronymi Mez.

作者信息

Bruno Mariela A, Trejo Sebastián A, Caffini Néstor O, López Laura M I

机构信息

Laboratorio de Investigación de Proteínas Vegetales (LIPROVE), Departamento de Ciencias Biológicas, Facultad de Ciencias Exactas, Universidad Nacional de La Plata, C.C. 711, La Plata B1900AVW, Argentina.

出版信息

Protein J. 2008 Dec;27(7-8):426-33. doi: 10.1007/s10930-008-9152-1.

Abstract

A new proteolytic enzyme, named hieronymain III, has been purified by ion-exchange chromatography from unripe fruits of Bromelia hieronymi Mez. The new peptidase belongs to the cysteine catalytic type, as well as hieronymain I and II, the other two peptidases previously isolated from this species. Hieronymain III showed optimum alkaline pH range (8.6-9.3) and the molecular mass (MALDI-TOF) was 23713 Da. The N-terminal sequence (AVPQSIDWRRYGAVTTSRNQG) exhibited a higher percentage identity with hieronymain II (93%) than with hieronymain I (71%). The three peptidases showed notable differences on synthetic substrates degradation: whereas hieronymain III was the only one able to hidrolyze Z-Arg-Arg-p-nitroanilide, hieronymain I and II could degrade Z-Phe-Arg-p-nitroanilide; on the other hand, PFLNA was only split by hieronymain I. Finally, the three proteases showed different preferences on N-alpha-CBZ-p-nitrophenyl aminoacid ester substrates. From a biotechnological point of view, cleavage specificity differences are significant enough to use these enzymes as potential tools in that area.

摘要

一种名为希罗尼酶III的新型蛋白水解酶已通过离子交换色谱法从希罗尼凤梨未成熟果实中纯化出来。这种新型肽酶与先前从该物种中分离出的另外两种肽酶希罗尼酶I和II一样,属于半胱氨酸催化类型。希罗尼酶III的最适碱性pH范围为8.6 - 9.3,分子量(基质辅助激光解吸电离飞行时间质谱法)为23713道尔顿。其N端序列(AVPQSIDWRRYGAVTTSRNQG)与希罗尼酶II(93%)的序列一致性百分比高于与希罗尼酶I(71%)的。这三种肽酶在合成底物降解方面表现出显著差异:希罗尼酶III是唯一能够水解Z - Arg - Arg - 对硝基苯胺的,而希罗尼酶I和II能够降解Z - Phe - Arg - 对硝基苯胺;另一方面,PFLNA仅被希罗尼酶I裂解。最后,这三种蛋白酶对N - α - CBZ - 对硝基苯基氨基酸酯底物表现出不同的偏好。从生物技术的角度来看,裂解特异性差异足以使这些酶成为该领域潜在的工具。

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