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大肠杆菌无机焦磷酸酶活性位点中E20D取代对其四级结构和催化特性的影响。

Effect of E20D substitution in the active site of Escherichia coli inorganic pyrophosphatase on its quaternary structure and catalytic properties.

作者信息

Volk S E, Dudarenkov V Y, Käpylä J, Kasho V N, Voloshina O A, Salminen T, Goldman A, Lahti R, Baykov A A, Cooperman B S

机构信息

A.N. Belozersky Institute of Physico-Chemical Biology, Moscow State University, Russia.

出版信息

Biochemistry. 1996 Apr 16;35(15):4662-9. doi: 10.1021/bi952636m.

Abstract

Glutamic acid 20 is an evolutionarily conserved residue found within the active site of the inorganic pyrophosphatase of Escherichia coli (E-PPase). Here we determine the effect of E20D substitution on the quaternary structure and catalytic properties of E-PPase. In contrast to wild-type enzyme, which is hexameric under a variety of conditions, E20D-PPase can be dissociated by dilution into nearly inactive trimers, as shown by electrophoresis of cross-linked enzyme, analytical ultracentrifugation, and measurement of catalytic activity as a function of enzyme concentration. Hexamer stability is increased in the presence of both substrate and Mg2+, is maximal at pH 6.5, and falls off sharply as the pH is lowered or raised from this value. Measured at saturating substrate, 20 mM Mg2+ and pH 7.2, E20D substitution (a) decreases activity towards inorganic pyrophosphate (PPi) hydrolysis and oxygen exchange between water and inorganic phosphate (P1), (b) increases the rate of net PPi synthesis, and (c) decreases the amount of enzyme-bound PPi in equilibrium with Pi in solution. Measurements of PPi hydrolysis rate as a function of both Mg2+ concentration and pH for the E20D variant show that its decreased activity is largely accounted for on the basis of an increased pKa of the catalytically essential base at the active site, and the need for a Mg2+ stoichiometry of 5 in the enzyme-substrate complex, similar to what is seen for the D97E variant. By contrast, wild-type PPase catalysis over a wide range of Mg2+ concentration and pH is dominated by an enzyme-substrate complex having a total of four Mg2+ ions. These results are consistent with a supporting role for Glu20 in PPase catalysis and demostrate that even conservative mutation at the active site can perturb the quaternary structure of the enzyme.

摘要

谷氨酸20是在大肠杆菌无机焦磷酸酶(E-PPase)活性位点中发现的一个进化保守残基。在此,我们确定E20D取代对E-PPase四级结构和催化特性的影响。与在各种条件下均为六聚体的野生型酶不同,E20D-PPase通过稀释可解离为几乎无活性的三聚体,交联酶的电泳、分析超速离心以及作为酶浓度函数的催化活性测量均表明了这一点。在底物和Mg2+存在的情况下,六聚体稳定性增加,在pH 6.5时达到最大值,并且当pH值从此值降低或升高时会急剧下降。在饱和底物、20 mM Mg2+和pH 7.2条件下测量发现,E20D取代(a)降低了对无机焦磷酸(PPi)水解以及水与无机磷酸(P1)之间氧交换的活性,(b)增加了净PPi合成速率,并且(c)减少了与溶液中Pi处于平衡状态的酶结合PPi的量。对E20D变体的PPi水解速率作为Mg2+浓度和pH函数的测量表明,其活性降低主要是由于活性位点催化必需碱基的pKa增加,以及酶-底物复合物中Mg2+化学计量比需要为5,这与D97E变体的情况类似。相比之下,野生型PPase在广泛的Mg2+浓度和pH范围内的催化作用主要由总共具有四个Mg2+离子的酶-底物复合物主导。这些结果与Glu20在PPase催化中起支持作用一致,并证明即使活性位点的保守突变也会扰乱酶的四级结构。

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