Dey E S, Aasmul-Olsen S
Carlsberg Research Laboratory, Valby, Denmark.
Enzyme Microb Technol. 1993 Dec;15(12):1042-50. doi: 10.1016/0141-0229(93)90052-4.
A novel carboxypeptidase (CPD-S3) from Penicillium janthinellum IBT 3991 has been isolated in a two-step purification procedure by cation exchange and affinity chromatography. The enzyme is a serine carboxypeptidase with a denatured molecular mass determined by SDS of 62 kDa of which 32% is carbohydrate. The isoelectric point is 5.1. CPD-S3 exhibits a high stability towards organic solvents and elevated temperatures. Besides the carboxypeptidase activity, CPD-S3 exhibits esterase, amidase, and carboxamidohydrolase activities. CPD-S3 favors substrates of L-configuration with basic amino acid residues in either P1 or P1', and particularly dibasic substrates and medium-sized straight-chain alkyl esters for hydrolysis. In aminolysis of esters, amino acid amides and hydrazines coupled in good yield, but methyl esters poorly, and unlike other carboxypeptidases, free amino acids could not be coupled or transpeptidation effected to form amides. In ester semisynthesis, peptides with neutral, but not basic, residues in P1 could be esterified. The scope of applicability for enzymatic peptide synthesis is limited.
通过阳离子交换和亲和色谱两步纯化程序,从产黄青霉IBT 3991中分离出一种新型羧肽酶(CPD-S3)。该酶是一种丝氨酸羧肽酶,经SDS测定其变性分子量为62 kDa,其中32%为碳水化合物。其等电点为5.1。CPD-S3对有机溶剂和高温具有较高的稳定性。除了羧肽酶活性外,CPD-S3还具有酯酶、酰胺酶和羧酰胺水解酶活性。CPD-S3倾向于P1或P1'位带有碱性氨基酸残基的L-构型底物,尤其偏好二碱基底物和中等大小的直链烷基酯进行水解。在酯的氨解反应中,氨基酸酰胺和肼的偶联产率良好,但甲酯的偶联效果较差,并且与其他羧肽酶不同,游离氨基酸无法进行偶联或进行转肽反应以形成酰胺。在酯的半合成中,P1位带有中性而非碱性残基的肽可以被酯化。酶促肽合成的适用范围有限。