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Kinetics of enzyme acylation and deacylation in the penicillin acylase-catalyzed synthesis of beta-lactam antibiotics

机译:青霉素酰基转移酶催化β-内酰胺类抗生素合成中酶酰化和脱酰反应的动力学

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摘要

Penicillin acylase catalyses the hydrolysis and synthesis of semisynthetic beta-lactam antibiotics via formation of a covalent acyl-enzyme intermediate. The kinetic and mechanistic aspects of these reactions were studied. Stopped-flow experiments with the penicillin and ampicillin analogues 2-nitro-5-phenylacetoxy-benzoic acid (NIPAOB) and D-2-nitro-5-[(phenylglycyl)amino]-benzoic acid (NIPGB) showed that the rate-limiting step in the conversion of penicillin G and ampicillin is the formation of the acylenzyme. The phenylacetyl- and phenylglycyl-enzymes are hydrolysed with rate constants of at least 1000 s(-1) and 75 s(-1), respectively. A normal solvent deuterium kinetic isotope effect (KIE) of 2 on the hydrolysis of 2-nitro-5[(phenylacetyl) amino]-benzoic acid (NIPAB), NIPGB and NIPAOB indicated that the formation of the acyl-enzyme proceeds via a general acid-base mechanism. In agreement with such a mechanism, the proton inventory of the k(cat) for NIPAB showed that one proton, with a fractionation factor of 0.5, is transferred in the transition state of the rate-limiting step. The overall KIE of 2 for the k(cat) of NIPAOB resulted from an inverse isotope effect at low concentrations of D2O, which is overridden by a large normal isotope effect at large molar fractions of D2O. Rate measurements in the presence of glycerol indicated that the inverse isotope effect originated from the higher viscosity of D2O compared to H2O. Deacylation of the acyl-enzyme was studied by nucleophile competition and inhibition experiments. The beta-lactam compound 7-aminodesacetoxycephalosporanic acid (7-ADCA) was a better nucleophile than 6-aminopenicillanic acid, caused by a higher affinity of the enzyme for 7-ADCA and complete suppression of hydrolysis of the acyl-enzyme upon binding of 7-ADCA. By combining the results of the steady-state, presteady state and nucleophile binding experiments, values for the relevant kinetic constants for the synthesis and hydrolysis of beta-lactam antibiotics were obtained.
机译:青霉素酰基转移酶通过形成共价酰基酶中间体催化半合成的β-内酰胺类抗生素的水解和合成。研究了这些反应的动力学和机理方面。用青霉素和氨苄青霉素类似物2-硝基-5-苯基乙酰氧基-苯甲酸(NIPAOB)和D-2-硝基-5-[(苯基甘氨酰)氨基]-苯甲酸(NIPGB)进行的停流实验表明,限速青霉素G和氨苄青霉素转化的一步是形成酰基转移酶。分别以至少1000 s(-1)和75 s(-1)的速率常数水解苯乙酰基和苯基甘氨酰酶。正常的溶剂氘动力学同位素效应(KIE)为2-硝基-5 [(苯基乙酰基)氨基]-苯甲酸(NIPAB),NIPGB和NIPAOB的水解反应,表明酰基酶的形成通过一般酸碱机制。与这种机制一致,NIPAB的k(cat)的质子清单表明,在限速步骤的过渡状态下转移了一个分馏因子为0.5的质子。 NIPAOB的k(cat)的总KIE为2,这是由于在低D2O浓度下的反同位素效应所致,而在D2O摩尔分数较大时,其较大的正同位素效应将其所取代。在甘油存在下的速率测量表明,同位素同位素反作用源自与水相比更高的D2O粘度。通过亲核试剂竞争和抑制实验研究了酰基酶的脱酰作用。 β-内酰胺化合物7-氨基去乙酰氧基头孢菌酸(7-ADCA)比6-氨基青霉酸更好的亲核试剂,这是因为该酶对7-ADCA的亲和力更高,并且在7与7-ADCA结合后完全抑制了酰基酶的水解-ADCA。通过结合稳态,稳态和亲核试剂结合实验的结果,获得了合成和水解β-内酰胺类抗生素相关动力学常数的值。

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