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一种丝氨酸/苏氨酸磷酸酶的突变分析。鉴定磷酸酯酶底物结合和催化中重要的残基。

Mutational analysis of a Ser/Thr phosphatase. Identification of residues important in phosphoesterase substrate binding and catalysis.

作者信息

Zhuo S, Clemens J C, Stone R L, Dixon J E

机构信息

Department of Biological Chemistry, University of Michigan, Ann Arbor 48109.

出版信息

J Biol Chem. 1994 Oct 21;269(42):26234-8.

PMID:7929339
Abstract

The Ser/Thr phosphoprotein phosphatases (PPases) display similarities in amino acid sequence and biochemical properties. Most members of this family require transition metal ions for activity. The smallest family member, the bacteriophage lambda PPase (lambda-PPase), has been successfully overexpressed in Escherichia coli, purified, and characterized (Zhuo, S., Clemens, J.C., Hakes, D.J., Barford, D., and Dixon, J. E. (1993) J. Biol. Chem. 268, 17754-17761). Site-directed mutagenesis has now been employed to define amino acid residues in lambda-PPase required for metal ion binding and catalysis. Conservative amino acid substitutions at residues Asp20, His22, Asp49, His76, and Glu77 affected lambda-PPase catalysis and metal ion binding, whereas substitutions at residues Arg53 and Arg73 affected catalysis and substrate binding. Each of these residues is invariant in all phosphoprotein phosphatases, suggesting that these residues may play important roles in binding and catalysis in all of the PPases. Computer-assisted sequence alignment further revealed that lambda-PPase residues Asp20, His22, Asp49, His76, Arg53, and Arg73 lie within three larger regions of PPase sequence identity with the consensus sequence (DXH-(approximately 25)-GDXXD-(approximately 25)-GNHD/E). This motif can be found in a wide variety of phosphoesterases unrelated to the PPases and defines structural and catalytic features utilized by a diverse group of enzymes for the hydrolysis of phosphate esters.

摘要

丝氨酸/苏氨酸磷酸蛋白磷酸酶(PP酶)在氨基酸序列和生化特性上表现出相似性。该家族的大多数成员的活性需要过渡金属离子。该家族中最小的成员,噬菌体λPP酶(λ-PP酶),已在大肠杆菌中成功过表达、纯化并进行了特性鉴定(卓,S.,克莱门斯,J.C.,哈克斯,D.J.,巴福德,D.,和迪克森,J.E.(1993)《生物化学杂志》268,17754 - 17761)。现在已采用定点诱变来确定λ-PP酶中金属离子结合和催化所需的氨基酸残基。在Asp20、His22、Asp49、His76和Glu77残基处进行保守氨基酸替换影响了λ-PP酶的催化和金属离子结合,而在Arg53和Arg73残基处的替换影响了催化和底物结合。所有这些残基在所有磷酸蛋白磷酸酶中都是不变的,这表明这些残基可能在所有PP酶的结合和催化中起重要作用。计算机辅助序列比对进一步揭示,λ-PP酶的Asp20、His22、Asp49、His76、Arg53和Arg73残基位于PP酶序列与共有序列(DXH -(约25)- GDXXD -(约25)- GNHD/E)具有一致性的三个较大区域内。这个基序可以在与PP酶无关的多种磷酸酯酶中找到,并定义了一组不同的酶用于磷酸酯水解的结构和催化特征。

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