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镁在突变型大肠杆菌碱性磷酸酶中的结合改变了反应机制中的速率决定步骤。

Binding of magnesium in a mutant Escherichia coli alkaline phosphatase changes the rate-determining step in the reaction mechanism.

作者信息

Xu X, Kantrowitz E R

机构信息

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

出版信息

Biochemistry. 1993 Oct 12;32(40):10683-91. doi: 10.1021/bi00091a019.

Abstract

To investigate the role of magnesium at the M3 site in Escherichia coli alkaline phosphatase, site-specific mutagenesis was used to substitute Glu-322, a ligand of the Mg2+ with either aspartic acid (E322D) or alanine (E322A). The residual Mg2+ content of the E322D enzyme is about 16-fold lower than that of the wild-type enzyme, and both mutant enzymes exhibit extremely poor catalytic activity compared to the wild-type enzyme. Mg2+ is a strong activator of the E322D enzyme. The hydrolysis activity of the E322D enzyme maximally stimulated by Mg2+ is 60% of that of the wild-type enzyme. Under conditions that measure the sum of hydrolysis and transphosphorylation activities, the kcat of the E322D enzyme in the presence of 500 mM Mg2+ is 2.6-fold higher than the kcat observed for the wild-type enzyme. Zn2+ also activates the E322D enzyme, although it is not as strong an activator as Mg2+. Competition experiments suggest that the activation of the E322D enzyme by Mg2+ and Zn2+ results from binding of either of these metals to the same site on the enzyme. High concentrations of the substrate p-nitrophenyl phosphate inhibit the activity of the E322D enzyme; however, high concentrations of Mg2+ can overcome this inhibition. Stopped-flow experiments indicate that the rate-limiting step of the nonstimulated E322D enzyme at pH 8.0 differs from that of the wild-type enzyme and involves the breaking of the covalent bond between the enzyme and phosphate.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

为了研究镁在大肠杆菌碱性磷酸酶M3位点的作用,采用定点诱变技术将Mg2+的配体Glu-322分别替换为天冬氨酸(E322D)或丙氨酸(E322A)。E322D酶的残余Mg2+含量比野生型酶低约16倍,并且与野生型酶相比,两种突变酶均表现出极低的催化活性。Mg2+是E322D酶的强激活剂。Mg2+最大程度刺激下的E322D酶水解活性是野生型酶的60%。在测量水解和转磷酸化活性总和的条件下,500 mM Mg2+存在时E322D酶的kcat比野生型酶观察到的kcat高2.6倍。Zn2+也能激活E322D酶,尽管其激活作用不如Mg2+强。竞争实验表明,Mg2+和Zn2+对E322D酶的激活是由于这两种金属之一与酶上的同一位点结合。高浓度的底物对硝基苯磷酸酯会抑制E322D酶的活性;然而,高浓度的Mg2+可以克服这种抑制作用。停流实验表明,pH 8.0时未受刺激的E322D酶的限速步骤与野生型酶不同,且涉及酶与磷酸盐之间共价键的断裂。(摘要截短至250字)

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