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鉴定丝氨酸624、天冬氨酸702和组氨酸734为小鼠二肽基肽酶IV(CD26)的催化三联体残基。它是一个新型非经典丝氨酸水解酶家族的成员。

Identification of serine 624, aspartic acid 702, and histidine 734 as the catalytic triad residues of mouse dipeptidyl-peptidase IV (CD26). A member of a novel family of nonclassical serine hydrolases.

作者信息

David F, Bernard A M, Pierres M, Marguet D

机构信息

Centre d'Immunologie, Institut National de la Santé et de la Recherche Médicale, Centre National de la Recherche Scientifique de Marseille-Luminy, France.

出版信息

J Biol Chem. 1993 Aug 15;268(23):17247-52.

PMID:8102366
Abstract

Dipeptidyl-peptidase IV (DPP IV, CD26, EC 3.4.14.5), a multifunctional ectoenzyme, is involved not only in the proteolytic cleavage of X-Pro from the NH2 terminus of a variety of biologically active peptides, but also in activation signal transduction and cell matrix adherence processes. We recently characterized mouse DPP IV cDNA and identified the serine protease Gly-X-Ser-X-Gly consensus motif in its extracellular domain. Mouse DPP IV does not exhibit sequence similarity with any of the classical members of this enzyme family (e.g. chymotrypsin and subtilisin) but shares a conserved structural domain of approximately 200 amino acids with several nonclassical serine hydrolases. In this study, analysis of the similarity of secondary structures and amino acid sequences between these enzymes led us to identify several conserved residues likely to be involved in the catalytic site of these DPP IV-related enzymes. These amino acids (Ser624, Asp702, and His734) were found to be arranged in a novel sequential order as compared with that of archetypal serine proteases (e.g. nucleophile (Ser)-acid-His versus His-acid-nucleophile (Ser), respectively). To directly explore the involvement of these residues in the catalytic function of these enzymes, we performed in vitro site-directed mutagenesis on mouse DPP IV cDNA. Our results indicate that although conservative or non-conservative permutations at these positions do not significantly alter the surface expression and biochemical properties of the mutant molecules, they completely impair their DPP IV enzymatic function. In contrast, mutagenesis of two other aspartic residues (Asp599 and Asp657), also conserved between these DPP IV-related enzymes, did not affect the enzymatic properties of the mouse enzyme. These data provide evidence that DPP IV and its related enzymes belong to a novel family that displays a catalytic triad distinct from that of the classical serine proteases.

摘要

二肽基肽酶IV(DPP IV,CD26,EC 3.4.14.5)是一种多功能胞外酶,不仅参与从多种生物活性肽的NH2末端进行X-Pro的蛋白水解切割,还参与激活信号转导和细胞基质黏附过程。我们最近对小鼠DPP IV cDNA进行了表征,并在其胞外结构域中鉴定出丝氨酸蛋白酶Gly-X-Ser-X-Gly共有基序。小鼠DPP IV与该酶家族的任何经典成员(如胰凝乳蛋白酶和枯草杆菌蛋白酶)均无序列相似性,但与几种非经典丝氨酸水解酶共享一个约200个氨基酸的保守结构域。在本研究中,对这些酶之间二级结构和氨基酸序列相似性的分析使我们鉴定出几个可能参与这些DPP IV相关酶催化位点的保守残基。与原型丝氨酸蛋白酶(例如亲核试剂(Ser)-酸-His分别与His-酸-亲核试剂(Ser))相比,发现这些氨基酸(Ser624、Asp702和His734)以新的顺序排列。为了直接探究这些残基在这些酶催化功能中的作用,我们对小鼠DPP IV cDNA进行了体外定点诱变。我们的结果表明,尽管这些位置的保守或非保守置换不会显著改变突变分子的表面表达和生化特性,但它们会完全损害其DPP IV酶功能。相反,对另外两个在这些DPP IV相关酶之间也保守的天冬氨酸残基(Asp599和Asp657)进行诱变,并不影响小鼠酶的酶学特性。这些数据提供了证据,表明DPP IV及其相关酶属于一个新型家族,其催化三联体与经典丝氨酸蛋白酶不同。

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