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酵母无机焦磷酸酶金属离子结合位点的研究。

Investigations of the metal ion-binding sites of yeast inorganic pyrophosphatase.

作者信息

Knight W B, Dunaway-Mariano D, Ransom S C, Villafranca J J

出版信息

J Biol Chem. 1984 Mar 10;259(5):2886-95.

PMID:6142048
Abstract

Yeast inorganic pyrophosphatase was found to bind two Mn2+ per subunit in the absence of phosphate and three Mn2+ per subunit in the presence of phosphate. Kinetic studies of the pyrophosphatase-catalyzed hydrolysis of Cr(NH3)4PP and Cr(H2O)4PP were carried out with Mn2+ and with Mg2+ as activators. The results from these studies suggest that three divalent cations per pyrophosphatase active site are required for catalysis. NMR and EPR studies were conducted to evaluate the relative location of the metal ion binding sites on the enzyme. The two Mn2+ ions bound to the free enzyme are in close enough proximity to magnetically interact. Analysis of the NMR and EPR data in terms of a dipolar relaxation mechanism between Mn2+ ions provides an estimate of the distance between them of 10-14 A. When the diamagnetic substrate analog [Co(NH3)4PNP]- or intermediate analog [Co(NH3)4 (P)2]- are bound to pyrophosphatase, two Mn2+ ions still bind to the enzyme and their magnetic interaction increases. In the presence of these Co3+ complexes, the Mn2+--Mn2+ separation decreases to 7-9 A. Several NMR and EPR experiments were conducted at low Mn2+ to pyrophosphatase ratios (approximately 0.3), where only one Mn2+ ion binds per subunit, in the presence of Cr3+ or Co3+ complexes of PNP or PP. Analysis of the Mn2+--Cr3+ dipolar relaxation evident in proton NMR and EPR data provided for the calculation of Mn2+--Cr3+ distances. When the substrate analog CrPNP was present, the Mn2+--Cr3+ distance was congruent to 7 A whereas, when Cr(P)2 was bound to pyrophosphatase, the Mn2+--Cr3+ distance was congruent to 5 A. These results strongly support a model for the catalytic site of pyrophosphatase that involves three metal ion cofactors.

摘要

研究发现,酵母无机焦磷酸酶在无磷酸盐存在时每个亚基结合两个Mn2+,在有磷酸盐存在时每个亚基结合三个Mn2+。以Mn2+和Mg2+作为激活剂,对焦磷酸酶催化Cr(NH3)4PP和Cr(H2O)4PP水解进行了动力学研究。这些研究结果表明,催化作用每个焦磷酸酶活性位点需要三个二价阳离子。进行了核磁共振(NMR)和电子顺磁共振(EPR)研究,以评估金属离子结合位点在酶上的相对位置。与游离酶结合的两个Mn2+离子距离足够近,能够发生磁相互作用。根据Mn2+离子之间的偶极弛豫机制对NMR和EPR数据进行分析,得出它们之间的距离估计为10 - 14埃。当抗磁性底物类似物[Co(NH3)4PNP]-或中间类似物[Co(NH3)4(P)2]-与焦磷酸酶结合时,两个Mn2+离子仍与酶结合,并且它们的磁相互作用增强。在这些Co3+配合物存在下,Mn2+ - Mn2+间距减小到7 - 9埃。在低Mn2+与焦磷酸酶比例(约0.3)下进行了几次NMR和EPR实验,此时每个亚基仅结合一个Mn2+离子,同时存在PNP或PP的Cr3+或Co3+配合物。质子NMR和EPR数据中明显的Mn2+ - Cr3+偶极弛豫分析用于计算Mn2+ - Cr3+距离。当存在底物类似物CrPNP时,Mn2+ - Cr3+距离等于7埃,而当Cr(P)2与焦磷酸酶结合时,Mn2+ - Cr3+距离等于5埃。这些结果有力地支持了一种涉及三个金属离子辅因子的焦磷酸酶催化位点模型。

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