Takahashi T, Yamazaki Y, Kato K
Biochem J. 1974 Mar;137(3):497-503. doi: 10.1042/bj1370497.
A partially purified preparation of an alpha-amino acid ester hydrolase was obtained from Acetobacter turbidans A.T.C.C. 9325, which catalyses synthesis of 7-(d-alpha-amino-alpha-phenylacetamido)-3-cephem-3-methyl-4- carboxylic acid (cephalexin) from methyl d-alpha-aminophenylacetate and 7-amino-3-deacetoxycephalosporanic acid. The enzyme preparation catalysed both cephalosprin synthesis from 7-amino-3-deacetoxycephalosporanic acid and suitable amino acid esters (e.g. methyl d-alpha-aminophenylacetate, l-cysteine methyl ester, glycine ethyl ester, d-alanine methyl ester, methyl dl-alpha-aminoiso-butyrate, l-serine methyl ester, d-leucine methyl ester, l-methionine methyl ester) and the hydrolysis of such esters. The substrate specificity of the enzyme preparation for the hydrolysis closely paralleled the acyl-donor specificity for cephalosporin synthesis, even to the reaction rates. Only alpha-amino acid derivatives could act as acyl donors. The hydrogen atom on the alpha-carbon atom was not always required by acyl donors. The hydrolysis rate was markedly diminished by adding 7-amino-3-deacetoxycephalosporanic acid to reaction mixtures, but no effect on the total reaction rate (the hydrolysis rate plus synthesis rate) was observed with various concentrations of 7-amino-3-deacetoxycephalosporanic acid. Both the hydrolytic and the synthetic activities of the enzyme preparation were inhibited by high concentrations of some acyl donors (e.g. methyl d-alpha-aminophenylacetate, ethyl d-alpha-aminophenylacetate). The enzyme preparation hydrolysed alpha-amino acid esters much more easily than alpha-amino acid derivatives with an acid-amide bond.
从混浊醋杆菌A.T.C.C. 9325中获得了一种部分纯化的α-氨基酸酯水解酶制剂,该酶可催化由d-α-氨基苯乙酸甲酯和7-氨基-3-脱乙酰氧基头孢烷酸合成7-(d-α-氨基-α-苯乙酰氨基)-3-头孢烯-3-甲基-4-羧酸(头孢氨苄)。该酶制剂既能催化由7-氨基-3-脱乙酰氧基头孢烷酸和合适的氨基酸酯(如d-α-氨基苯乙酸甲酯、L-半胱氨酸甲酯、甘氨酸乙酯、d-丙氨酸甲酯、dl-α-氨基异丁酸甲酯、L-丝氨酸甲酯、d-亮氨酸甲酯、L-蛋氨酸甲酯)合成头孢菌素,也能催化这些酯的水解。该酶制剂对水解的底物特异性与头孢菌素合成的酰基供体特异性密切平行,甚至在反应速率方面也是如此。只有α-氨基酸衍生物可以作为酰基供体。酰基供体并不总是需要α-碳原子上的氢原子。向反应混合物中加入7-氨基-3-脱乙酰氧基头孢烷酸会显著降低水解速率,但在不同浓度的7-氨基-3-脱乙酰氧基头孢烷酸下,未观察到对总反应速率(水解速率加合成速率)有影响。高浓度的一些酰基供体(如d-α-氨基苯乙酸甲酯、d-α-氨基苯乙酸乙酯)会抑制该酶制剂的水解和合成活性。该酶制剂水解α-氨基酸酯比水解具有酰胺键的α-氨基酸衍生物容易得多。