来自紫青霉的羧肽酶S-1:水解和氨解反应中的酶性质。

K Breddam
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引用次数: 14

摘要

采用亲和层析法从青霉菌中分离得到羧肽酶S-1。酶的活性在有机溶剂中异常稳定,例如80%的甲醇。肽底物的水解显然依赖于三个可电离基团。一个pKa为4.0-4.5的基团是去质子化形式的催化必需残基,另一个pKa为6.5-7.0的基团以质子化形式发挥作用,显然是肽底物c端羧酸基的结合位点。第三个基团的pKa为5.0-5.5,似乎是位于S1结合位点的羧酸基团。该基团的去质子化形成带负电荷的羧酸基团对P1位置上具有疏水氨基酸残基的底物的水解有不利影响,而对P1位置上具有带正电荷的精氨酸或赖氨酸残基的底物的水解有有利影响。因此,酶对底物的偏好取决于pH值。在pH 6.0(酯水解的最佳条件)时,酶对Bz-X-OMe底物具有特异性,其中X =精氨酸和赖氨酸。羧基肽酶S-1利用氨基酸和氨基酸酰胺作为亲核试剂,只要底物在P1位置含有碱性氨基酸残基,如Bz-Arg-OBu和Bz-Arg-Leu-OH,就能通过肽的氨解(转肽化反应)和肽酯有效催化肽键的形成。在一些亲核试剂中,氨基水解的分数超过了先前报道的类似研究中使用羧肽酶Y和麦芽羧肽酶II的分数。
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Carboxypeptidase S-1 from Penicillium janthinellum: enzymatic properties in hydrolysis and aminolysis reactions.

Carboxypeptidase S-1 from Penicillium janthinellum has been isolated by affinity chromatography and characterized. The enzyme activity is unusually stable in organic solvents, e.g. 80% methanol. The hydrolysis of peptide substrates is apparently dependent on three ionizable groups. One group, with pKa of 4.0-4.5, is a catalytically essential residue in its deprotonated form, and another group with a pKa of 6.5-7.0 functions in its protonated form, apparently as the binding site for the C-terminal carboxylate group of peptide substrates. The third group, with a pKa of 5.0-5.5, appears to be a carboxylic acid group located at the S1 binding site. Deprotonation of this group to form a negatively charged carboxylate group has an adverse effect on the hydrolysis of substrates with hydrophobic amino acid residues at the P1 position and a beneficial effect on the hydrolysis of substrates with the positively charged arginyl or lysyl residues at this position. The substrate preference of the enzyme is consequently pH dependent. At pH 6.0 (the optimum for ester hydrolysis) the enzyme is essentially specific for Bz-X-OMe substrates where X = Arg and Lys. Using amino acids and amino acid amides as nucleophiles carboxypeptidase S-1 efficiently catalyses the formation of peptide bonds by aminolysis of peptides (transpeptidation reactions) and peptide esters provided that the substrate contains a basic amino acid residue at the P1 position, e.g. Bz-Arg-OBu and Bz-Arg-Leu-OH. With several nucleophiles the fractions of aminolysis exceed those previously reported in similar studies with carboxypeptidase Y and malt carboxypeptidase II.

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