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链霉菌R61 D-羧肽酶-转肽酶的荧光和圆二色性研究。该酶与青霉素的结合。

Fluorescence and circular dichroism studies on the Streptomyces R61 DD-carboxypeptidase-transpeptidase. Penicillin binding by the enzyme.

作者信息

Nieto M, Perkins H R, Frère J M, Ghuysen J M

出版信息

Biochem J. 1973 Nov;135(3):493-505. doi: 10.1042/bj1350493.

Abstract

The circular dichroism of the dd-carboxypeptidase-transpeptidase from Streptomyces R61 shows in the near u.v. a set of weak extrema at 289nm (positive) and at 282, 275 and 268nm (all negative). In the far u.v. it shows negative extrema at 217-218 and 208nm, crossover at 202nm and a positive maximum at about 194nm. The u.v. absorption of the enzyme shows it to contain tyrosine and tryptophan in approx. 3.4:1 ratio. The enzyme is fluorescent with a maximum emission at 318-320nm. The near-u.v. circular dichroism of the protein is extensively affected by binding of penicillin G, but the far u.v. is unaffected. Binding of the antibiotic also causes quenching of the fluorescence of the enzyme. The latter effect has been used to study the binding of penicillin G to the enzyme and the influence exerted upon it by salts, denaturants and peptide substrates and inhibitors. High-affinity binding of penicillin appears to be comparatively slow and reversible, and can occur under conditions in which the protein is enzymically inactive. The thermal denaturation of the enzyme in guanidinium chloride at pH7 is affected by binding of the antibiotic. The presence of even large concentrations of beta-mercaptoethanol neither impaired the activity of the enzyme nor prevented its inhibition by penicillin G or cephalosporin C. A new hypothesis for the molecular mechanism of the interaction of the enzyme with penicillin is proposed.

摘要

来自链霉菌R61的dd-羧肽酶-转肽酶的圆二色性在近紫外区域显示出一组弱极值,在289nm处为正,在282、275和268nm处均为负。在远紫外区域,它在217 - 218和208nm处显示负极值,在202nm处有交叉,在约194nm处有正最大值。该酶的紫外吸收表明它含有酪氨酸和色氨酸,比例约为3.4:1。该酶具有荧光性,最大发射波长在318 - 320nm。蛋白质的近紫外圆二色性受青霉素G结合的影响很大,但远紫外区域不受影响。抗生素的结合也会导致酶荧光的淬灭。后一种效应已被用于研究青霉素G与该酶的结合以及盐、变性剂、肽底物和抑制剂对其的影响。青霉素的高亲和力结合似乎相对较慢且可逆,并且可以在蛋白质无酶活性的条件下发生。在pH7的氯化胍中,该酶的热变性受抗生素结合的影响。即使存在高浓度的β-巯基乙醇,也不会损害该酶的活性,也不会阻止其被青霉素G或头孢菌素C抑制。本文提出了一个关于该酶与青霉素相互作用分子机制的新假说。

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