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细菌β-氨基肽酶:结构见解与生物催化应用。

Bacterial β-aminopeptidases: structural insights and applications for biocatalysis.

机构信息

EMPA, Swiss Federal Laboratories for Materials Science and Technology, Laboratory for Biomaterials, Lerchenfeldstrasse 5, CH-9014 St. Gallen, Switzerland.

出版信息

Chem Biodivers. 2012 Nov;9(11):2388-409. doi: 10.1002/cbdv.201200305.

Abstract

β-Aminopeptidases comprise a class of enzymes with functional and structural similarities. All members of the β-aminopeptidases described to date were isolated from bacterial sources. Uniquely, they catalyze the hydrolysis of β(3) - and/or β(2) -amino acid residues from amides and peptides that are otherwise considered proteolytically stable. Due to this unusual reactivity with β-peptide substrates, β-aminopeptidases have potential to be used as biocatalysts for β-peptide synthesis and for the resolution of enantiomerically pure β-amino acids from racemic substrate mixtures. β-Aminopeptidases are formed from an inactive precursor by posttranslational autoproteolytic cleavage, exposing the catalytic nucleophile at the N-terminus of the newly formed β-polypeptide chain. Such an activation step is a characteristic trait of enzymes of the N-terminal nucleophile (Ntn) hydrolase superfamily. However, classical Ntn hydrolases and β-aminopeptidases differ by the fold of their catalytic cores and are hence likely to originate from distinct evolutionary ancestors. In this contribution, we review the existing literature on β-aminopeptidases, including biochemical and functional studies, as well as structural investigations that recently allowed insights into the catalytic mechanisms of precursor processing and β-peptide conversion.

摘要

β-氨基肽酶属于具有功能和结构相似性的一类酶。迄今为止,所描述的所有β-氨基肽酶均从细菌来源中分离得到。它们的独特之处在于能够催化酰胺和肽中β(3)-和/或β(2)-氨基酸残基的水解,而这些酰胺和肽在其他方面被认为是具有蛋白酶稳定性的。由于与β-肽底物具有这种不寻常的反应性,β-氨基肽酶有可能被用作β-肽合成的生物催化剂,以及从外消旋底物混合物中拆分对映体纯的β-氨基酸。β-氨基肽酶由翻译后自蛋白水解切割形成无活性的前体,从而在新形成的β-多肽链的 N 末端暴露催化亲核试剂。这种激活步骤是 N-末端亲核体(Ntn)水解酶超家族中酶的特征特征。然而,经典的 Ntn 水解酶和β-氨基肽酶在其催化核心的折叠上有所不同,因此可能源自不同的进化祖先。在本综述中,我们回顾了有关β-氨基肽酶的现有文献,包括生化和功能研究,以及最近的结构研究,这些研究使人们对前体加工和β-肽转化的催化机制有了深入的了解。

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