Kinetic studies on the mechanism of the penicillin amidase-catalysed synthesis of ampicillin and benzylpenicillin.

V Kasche, U Haufler, R Zöllner
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引用次数: 42

Abstract

Hydrophobic protein chromatography was used to prepare homogeneous fractions of penicillin amidase (EC 3.5.1.11) from E. coli. The apparent ratios of the rate constants for the deacylation of the acyl-penicillin amidase formed in the hydrolysis of phenylacetylglycine or D-phenylglycine methyl ester, by H2O and 6-aminopenicillanic acid (6-APA), were determined at different concentrations of the latter compound. The ratios were obtained from direct measurements of the initial rates of formation of phenylacetic acid and benzylpenicillin or D-phenylglycine and ampicillin. For the semisynthesis of ampicillin as well as of benzylpenicillin the ratio was found to depend on the concentration of 6-APA. This was observed for heterogeneous and homogeneous enzyme preparations. These results show that 6-APA must be bound to the acyl-enzyme before the deacylation, yielding ampicillin and benzylpenicillin, occurs. The dissociation constant KN for the formation of the complex was estimated to be approximately 10mM. This mechanism in which acyl-enzyme with and without bound nucleophile is involved, is in agreement with the principle of microscopic reversibility. Both acyl-enzymes can be deacylated by H2O. The finding that there is a specific binding site for 6-APA adjacent to the binding site for the phenylacetyl-(D-phenylglycyl-) group in the active site of the enzyme is supported by the observation that 6-APA acts as a mixed inhibitor in the hydrolysis of D-phenylglycine methyl ester. The ionic strength dependence indicates that the binding site for 6-APA of the acyl-enzyme is positively charged.

青霉素酰胺酶催化氨苄西林和青霉素合成机理的动力学研究。
采用疏水蛋白层析法制备大肠杆菌中青霉素酰胺酶(EC 3.5.1.11)的均相组分。测定了水与6-氨基青霉素酸(6-APA)在不同浓度下水解苯乙酰甘氨酸或d -苯甘氨酸甲酯时形成的酰基青霉素酰胺酶去酰化速率常数的表观比。这些比率是通过直接测量苯乙酸和青霉素或d -苯甘氨酸和氨苄西林的初始形成速率得到的。对于氨苄西林和苄西林的半合成,发现其比值取决于6-APA的浓度。这在异质和均相酶制剂中都有观察到。这些结果表明,6-APA必须与酰基酶结合,才能发生去酰化反应,生成氨苄西林和青霉素。形成络合物的解离常数KN估计约为10mM。这种涉及酰基酶结合或不结合亲核试剂的机制符合微观可逆性原理。两种酰基酶都能被水去酰化。6-APA在d -苯基甘氨酸甲酯水解过程中作为混合抑制剂的观察结果支持了6-APA在酶活性位点的苯乙酰基-(d -苯基甘氨酸-)基团结合位点附近有一个特异性结合位点的发现。离子强度依赖性表明酰基酶的6-APA结合位点带正电。
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