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大肠杆菌无机焦磷酸酶亚基界面金属结合位点的定向诱变研究。

Directed mutagenesis studies of the metal binding site at the subunit interface of Escherichia coli inorganic pyrophosphatase.

作者信息

Efimova I S, Salminen A, Pohjanjoki P, Lapinniemi J, Magretova N N, Cooperman B S, Goldman A, Lahti R, Baykov A A

机构信息

A. N. Belozersky Institute of Physico-Chemical Biology and School of Chemistry, Moscow State University, Moscow 119899, Russia.

出版信息

J Biol Chem. 1999 Feb 5;274(6):3294-9. doi: 10.1074/jbc.274.6.3294.

DOI:10.1074/jbc.274.6.3294
PMID:9920869
Abstract

Recent crystallographic studies on Escherichia coli inorganic pyrophosphatase (E-PPase) have identified three Mg2+ ions/enzyme hexamer in water-filled cavities formed by Asn24, Ala25, and Asp26 at the trimer-trimer interface (Kankare, J., Salminen, T., Lahti, R., Cooperman, B., Baykov, A. A., and Goldman, A. (1996) Biochemistry 35, 4670-4677). Here we show that D26S and D26N substitutions decrease the stoichiometry of tight Mg2+ binding to E-PPase by approximately 0.5 mol/mol monomer and increase hexamer stability in acidic medium. Mg2+ markedly decelerates the dissociation of enzyme hexamer into trimers at pH 5.0 and accelerates hexamer formation from trimers at pH 7.2 with wild type E-PPase and the N24D variant, in contrast to the D26S and D26N variants, when little or no effect is seen. The catalytic parameters describing the dependences of enzyme activity on substrate and Mg2+ concentrations are of the same magnitude for wild type E-PPase and the three variants. The affinity of the intertrimer site for Mg2+ at pH 7.2 is intermediate between those of two Mg2+ binding sites found in the E-PPase active site. It is concluded that the metal ion binding site found at the trimer-trimer interface of E-PPase is a high affinity site whose occupancy by Mg2+ greatly stabilizes the enzyme hexamer but has little effect on catalysis.

摘要

最近对大肠杆菌无机焦磷酸酶(E-PPase)的晶体学研究表明,在三聚体-三聚体界面由Asn24、Ala25和Asp26形成的充满水的腔中,每个酶六聚体含有三个Mg2+离子(坎卡雷,J.,萨尔米宁,T.,拉赫蒂,R.,库珀曼,B.,贝伊科夫,A. A.,和戈德曼,A.(1996年)《生物化学》35卷,4670 - 4677页)。在此我们表明,D26S和D26N取代使紧密结合到E-PPase上的Mg2+化学计量比降低约0.5摩尔/摩尔单体,并增加了酸性介质中六聚体的稳定性。在pH 5.0时,Mg2+显著减缓了酶六聚体解离为三聚体的速度,而在pH 7.2时,对于野生型E-PPase和N24D变体,Mg2+加速了三聚体形成六聚体的过程,与D26S和D26N变体形成对比,后者几乎没有或没有影响。描述酶活性对底物和Mg2+浓度依赖性的催化参数,对于野生型E-PPase和这三种变体来说大小相同。在pH 7.2时,三聚体间位点对Mg2+的亲和力介于E-PPase活性位点中发现的两个Mg2+结合位点的亲和力之间。得出的结论是,在E-PPase三聚体-三聚体界面发现的金属离子结合位点是一个高亲和力位点,Mg2+占据该位点极大地稳定了酶六聚体,但对催化作用影响很小。

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