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探究大肠杆菌双功能GlmU蛋白中半胱氨酸残基在氨基葡萄糖-1-磷酸乙酰转移酶活性中的作用:定点诱变及突变酶的特性分析

Probing the role of cysteine residues in glucosamine-1-phosphate acetyltransferase activity of the bifunctional GlmU protein from Escherichia coli: site-directed mutagenesis and characterization of the mutant enzymes.

作者信息

Pompeo F, van Heijenoort J, Mengin-Lecreulx D

机构信息

Biochimie Structurale et Cellulaire, Centre National de la Recherche Scientifique, Université Paris-Sud, 91405 Orsay Cedex, France.

出版信息

J Bacteriol. 1998 Sep;180(18):4799-803. doi: 10.1128/JB.180.18.4799-4803.1998.

Abstract

The glucosamine-1-phosphate acetyltransferase activity but not the uridyltransferase activity of the bifunctional GlmU enzyme from Escherichia coli was lost when GlmU was stored in the absence of beta-mercaptoethanol or incubated with thiol-specific reagents. The enzyme was protected from inactivation in the presence of its substrate acetyl coenzyme A (acetyl-CoA), suggesting the presence of an essential cysteine residue in or near the active site of the acetyltransferase domain. To ascertain the role of cysteines in the structure and function of the enzyme, site-directed mutagenesis was performed to change each of the four cysteines to alanine, and plasmids were constructed for high-level overproduction and one-step purification of histidine-tagged proteins. Whereas the kinetic parameters of the bifunctional enzyme appeared unaffected by the C296A and C385A mutations, 1,350- and 8-fold decreases of acetyltransferase activity resulted from the C307A and C324A mutations, respectively. The Km values for acetyl-CoA and GlcN-1-P of mutant proteins were not modified, suggesting that none of the cysteines was involved in substrate binding. The uridyltransferase activities of wild-type and mutant GlmU proteins were similar. From these studies, the two cysteines Cys307 and Cys324 appeared important for acetyltransferase activity and seemed to be located in or near the active site.

摘要

当将来自大肠杆菌的双功能GlmU酶在不存在β-巯基乙醇的情况下储存或与硫醇特异性试剂一起孵育时,该酶的氨基葡萄糖-1-磷酸乙酰转移酶活性丧失,但尿苷转移酶活性未丧失。在其底物乙酰辅酶A(乙酰-CoA)存在的情况下,该酶受到保护而不被失活,这表明在乙酰转移酶结构域的活性位点内或附近存在一个必需的半胱氨酸残基。为了确定半胱氨酸在该酶的结构和功能中的作用,进行了定点诱变,将四个半胱氨酸中的每一个都替换为丙氨酸,并构建了用于组氨酸标签蛋白的高水平过量生产和一步纯化的质粒。虽然双功能酶的动力学参数似乎不受C296A和C385A突变的影响,但C307A和C324A突变分别导致乙酰转移酶活性下降了1350倍和8倍。突变蛋白对乙酰-CoA和GlcN-1-P的Km值未发生改变,这表明没有一个半胱氨酸参与底物结合。野生型和突变型GlmU蛋白的尿苷转移酶活性相似。从这些研究中可以看出,两个半胱氨酸Cys307和Cys324对乙酰转移酶活性似乎很重要,并且似乎位于活性位点内或附近。

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