首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >The Fe(III)Zn(II) form of recombinant human purple acid phosphatase is not activated by proteolysis
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The Fe(III)Zn(II) form of recombinant human purple acid phosphatase is not activated by proteolysis

机译:重组人紫色酸性磷酸酶的Fe(III)Zn(II)形式不被蛋白水解激活

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The kinetics and spectroscopic properties of the single polypeptide and proteolytically cleaved form of recombinant Fe(3+)Fe(2+) human purple acid phosphatase (recHPAP) exhibit significant differences, primarily due to a difference in pK(es,1) (the value of an acid dissociation constant of the ES complex). These differences are due to the presence or absence, respectively, of an interaction between an aspartate residue in an exposed loop of the protein and one or more active site residues. To further explore the origin of these differences, the ferrous ion of recHPAP has been replaced by zinc. Analysis of the reconstituted Fe(3+)Zn(2+)recHPAP reveals an unexpected catalytic activity versus pH profile, in that the optimal pH is 6.3, similar to that of the proteolytically cleaved form (6.5). Moreover, replacement of the ferrous ion by zinc increases the turnover number more than 10-fold; the pK(es) values are also shifted as expected for the change in the divalent metal ion. Although the EPR spectra of both single polypeptide and proteolytically cleaved Fe(3+)Zn(2+)-recHPAP are independent of pH over the range 4.5-6.2, the visible spectrum of Fe(3+)Zn(2+)-recHPAP is pH dependent. These results suggest that the properties and environment of the divalent metal are important in determining the catalytic properties of mammalian PAPs, and in particular that a solvent molecule coordinated to the divalent metal ion may play a critical role in the catalytic cycle of these enzymes.
机译:动力学和光谱性质的单个多肽和重组Fe(3+)Fe(2+)人紫色酸性磷酸酶(recHPAP)的蛋白水解切割形式表现出显着差异,主要是由于pK(es,1)的差异( ES复合物的酸解离常数的数值)。这些差异分别是由于蛋白质暴露环中的天冬氨酸残基与一个或多个活性位点残基之间存在或不存在相互作用所致。为了进一步探讨这些差异的根源,recHPAP的亚铁离子已被锌替代。对重构的Fe(3+)Zn(2+)recHPAP的分析显示,pH曲线具有出乎意料的催化活性,其最佳pH值为6.3,类似于蛋白水解切割的形式(6.5)。此外,用锌替代亚铁离子可使周转率提高十倍以上; pK(es)值也随二价金属离子变化的预期而移动。虽然单个多肽和蛋白水解切割的Fe(3+)Zn(2 +)-recHPAP的EPR谱与pH无关,但在4.5-6.2范围内,Fe(3+)Zn(2 +)-recHPAP的可见光谱与pH有关。这些结果表明,二价金属的性质和环境对于确定哺乳动物PAP的催化性质很重要,尤其是与二价金属离子配位的溶剂分子可能在这些酶的催化循环中起关键作用。

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