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天冬氨酸327对大肠杆菌碱性磷酸酶催化作用及锌离子结合的重要性。

The importance of aspartate 327 for catalysis and zinc binding in Escherichia coli alkaline phosphatase.

作者信息

Xu X, Kantrowitz E R

机构信息

Department of Chemistry, Boston College, Chestnut Hill, Massachusetts 02167.

出版信息

J Biol Chem. 1992 Aug 15;267(23):16244-51.

PMID:1644810
Abstract

In order to investigate the function of Asp-327, a bidentate ligand of one of the zinc atoms in Escherichia coli alkaline phosphatase, and the importance of this zinc atom in catalysis, site-specific mutagenesis was used to convert Asp-327 to either asparagine or alanine. The 10(7)-fold decrease in the kcat/Km ratio observed for the Asp-327----Ala enzyme compared to the wild-type enzyme indicates that the side chain of Asp-327 is important for zinc binding at the M1 site. However, only one of the two carboxyl oxygens of Asp-327 is essential for zinc binding, since the Asp-327----Asn enzyme shows approximately the same hydrolysis activity as the wild-type enzyme. The fact that the enzymatic activity of this mutant enzyme shows a dependence on zinc concentration suggests that the other carboxyl oxygen or the negative charge on the side chain of Asp-327 is important in binding of the zinc at the M1 site. However, the zinc hydroxyl must still be appropriately positioned to attack the phosphoserine in the Asp-327----Asn enzyme; therefore, the negative charge and at least one carboxyl oxygen of the side chain are not directly involved in positioning or deprotonating the zinc hydroxyl. 31P NMR studies indicate that the Asp-327----Asn enzyme exhibits transphosphorylation activity at both pH 8.0 and pH 10.0, but at a reduced level compared to the wild-type enzyme. The biphasic production of 2,4-dinitrophenylate in the pre-steady-state kinetics of the mutant enzymes at pH 5.5 suggests that the breaking of the phosphoenzyme covalent complex is rate-limiting for both mutant enzymes. These results suggest that the main function of the zinc atom at the M1 site in catalysis involves decomposition of the phosphoenzyme covalent complex and that it may be important in helping to stabilize the alcohol leaving group.

摘要

为了研究大肠杆菌碱性磷酸酶中锌原子之一的双齿配体天冬氨酸-327的功能,以及该锌原子在催化作用中的重要性,采用定点诱变技术将天冬氨酸-327分别转化为天冬酰胺或丙氨酸。与野生型酶相比,天冬氨酸-327→丙氨酸酶的催化常数与米氏常数之比降低了10^7倍,这表明天冬氨酸-327的侧链对于锌在M1位点的结合很重要。然而,天冬氨酸-327的两个羧基氧中只有一个对于锌的结合是必需的,因为天冬氨酸-327→天冬酰胺酶显示出与野生型酶大致相同的水解活性。该突变酶的酶活性显示出对锌浓度的依赖性,这一事实表明天冬氨酸-327侧链上的另一个羧基氧或负电荷对于锌在M1位点的结合很重要。然而,锌羟基仍必须处于适当位置以攻击天冬氨酸-327→天冬酰胺酶中的磷酸丝氨酸;因此,侧链的负电荷和至少一个羧基氧并不直接参与锌羟基的定位或去质子化。31P核磁共振研究表明,天冬氨酸-327→天冬酰胺酶在pH 8.0和pH 10.0时均表现出转磷酸化活性,但与野生型酶相比活性降低。在pH 5.5时突变酶的预稳态动力学中2,4-二硝基苯酯的双相产生表明,磷酸酶共价复合物的断裂对两种突变酶来说都是限速步骤。这些结果表明,M1位点的锌原子在催化作用中的主要功能涉及磷酸酶共价复合物的分解,并且它可能在帮助稳定醇离去基团方面很重要。

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