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嘌呤核苷磷酸化酶。来自小牛脾脏的该酶的动力学机制。

Purine nucleoside phosphorylase. Kinetic mechanism of the enzyme from calf spleen.

作者信息

Porter D J

机构信息

Experimental Therapy Division, Wellcome Research Laboratories, Research Triangle Park, North Carolina 27709.

出版信息

J Biol Chem. 1992 Apr 15;267(11):7342-51.

PMID:1559977
Abstract

Ribose 1-phosphate, phosphate, and acyclovir diphosphate quenched the fluorescence of purine nucleoside phosphorylase at pH 7.1 and 25 degrees C. The fluorescence of enzyme-bound guanine was similar to that of anionic guanine in ethanol. Guanine and ribose 1-phosphate bound to free enzyme, whereas inosine and guanosine were not bound to free enzyme in the absence of phosphate. Thus, synthesis proceeded by a random mechanism, and phosphorolysis proceeded by an ordered mechanism. Steady-state kinetic data for the phosphorolysis of 100 microM guanosine were fitted to a bifunctional kinetic model with catalytic rate constants of 22 and 1.3 s-1. The dissociation rate constants for guanine from the enzyme-guanine complex at high and low phosphate concentrations were similar to the catalytic rate constants. Fluorescence changes of the enzyme during phosphorolysis suggested that ribose 1-phosphate dissociated from the enzyme ribose 1-phosphate-guanine complex rapidly and that guanine dissociated from the enzyme-guanine complex slowly. The association and dissociation rate constants for acyclovir diphosphate, a potent inhibitor of the enzyme (Tuttle, J. V., and Krenitsky, T. A. (1984) J. Biol. Chem. 259, 4065-4069), were also dependent on phosphate concentration. The effects of phosphate are discussed in terms of a dual functional binding site for phosphate.

摘要

在pH 7.1和25摄氏度条件下,磷酸核糖-1、磷酸和阿昔洛韦二磷酸淬灭了嘌呤核苷磷酸化酶的荧光。酶结合鸟嘌呤的荧光与乙醇中阴离子鸟嘌呤的荧光相似。鸟嘌呤和磷酸核糖-1与游离酶结合,而在没有磷酸的情况下,肌苷和鸟苷不与游离酶结合。因此,合成通过随机机制进行,而磷酸解通过有序机制进行。100微摩尔鸟苷磷酸解的稳态动力学数据拟合到一个双功能动力学模型,催化速率常数分别为22和1.3 s⁻¹。在高磷酸盐浓度和低磷酸盐浓度下,鸟嘌呤从酶-鸟嘌呤复合物中的解离速率常数与催化速率常数相似。磷酸解过程中酶的荧光变化表明,磷酸核糖-1从酶-磷酸核糖-1-鸟嘌呤复合物中快速解离,而鸟嘌呤从酶-鸟嘌呤复合物中缓慢解离。阿昔洛韦二磷酸是该酶的有效抑制剂(塔特尔,J. V.,和克伦尼茨基,T. A.(1984年)《生物化学杂志》259,4065 - 4069),其结合和解离速率常数也取决于磷酸盐浓度。根据磷酸盐的双功能结合位点讨论了磷酸盐的作用。

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