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重组人紫色酸性磷酸酶中多个质子化状态的直接观察

Direct observation of multiple protonation states in recombinant human purple acid phosphatase.

作者信息

Funhoff Enrico G, de Jongh Thyra E, Averill Bruce A

机构信息

Swammerdam Institute for Life Sciences, University of Amsterdam, Plantage Muidergracht 12, 1018 Amsterdam, The Netherlands.

出版信息

J Biol Inorg Chem. 2005 Aug;10(5):550-63. doi: 10.1007/s00775-005-0001-9. Epub 2005 Sep 23.

Abstract

To date, most spectroscopic studies on mammalian purple acid phosphatases (PAPs) have been performed at a single pH, typically pH 5. The catalytic activity of these enzymes is, however, pH dependent, with optimal pH values of 5.5-6.2 (depending on the form). For example, the pH optimum of PAPs isolated as single polypeptides is around pH 5.5, which is substantially lower that of proteolytically cleaved PAPs (ca. pH 6.2). In addition, the catalytic activity of single polypeptide PAPs at their optimal pH values is four to fivefold lower than that of the proteolytically cleaved enzymes. In order to elucidate the chemical basis for the pH dependence of these enzymes, the spectroscopic properties of both the single polypeptide and proteolytically cleaved forms of recombinant human PAP (recHPAP) and their complexes with inhibitory anions have been examined over the pH range 4 to 8. The EPR spectra of both forms of recHPAP are pH dependent and show the presence of three species: an inactive low pH form (pH<pK( a,1)), an active form (pK( a,1)<pH<pK( a,2)), and an inactive high pH form (pH>pK( a,2)). The pK( a,1) values observed by EPR for the single polypeptide and proteolytically cleaved forms are similar to those previously observed in kinetics studies. The spectroscopic properties of the enzyme-phosphate complex (which should mimic the enzyme-substrate complex), the enzyme-fluoride complex, and the enzyme-fluoride-phosphate complex (which should mimic the ternary enzyme-substrate-hydroxide complex) were also examined. EPR spectra show that phosphate binds to the diiron center of the proteolytically cleaved form of the enzyme, but not to that of the single polypeptide form. EPR spectra also show that fluoride binds only to the low pH form of the enzymes, in which it presumably replaces a coordinated water molecule. The binding of fluoride and phosphate to form a ternary complex appears to be cooperative.

摘要

迄今为止,大多数关于哺乳动物紫色酸性磷酸酶(PAPs)的光谱研究都是在单一pH值下进行的,通常是pH 5。然而,这些酶的催化活性依赖于pH值,最佳pH值为5.5 - 6.2(取决于其形式)。例如,以单一多肽形式分离的PAPs的最佳pH值约为pH 5.5,这明显低于经蛋白水解切割的PAPs(约pH 6.2)。此外,单一多肽PAPs在其最佳pH值下的催化活性比经蛋白水解切割的酶低四到五倍。为了阐明这些酶对pH依赖性的化学基础,研究了重组人PAP(recHPAP)的单一多肽形式和经蛋白水解切割形式及其与抑制性阴离子的复合物在pH 4至8范围内的光谱性质。recHPAP两种形式的电子顺磁共振(EPR)光谱都依赖于pH值,并显示存在三种状态:无活性的低pH形式(pH < pK(a,1))、活性形式(pK(a,1) < pH < pK(a,2))和无活性的高pH形式(pH > pK(a,2))。通过EPR观察到的单一多肽形式和经蛋白水解切割形式的pK(a,1)值与先前在动力学研究中观察到的值相似。还研究了酶 - 磷酸盐复合物(应模拟酶 - 底物复合物)、酶 - 氟化物复合物和酶 - 氟化物 - 磷酸盐复合物(应模拟三元酶 - 底物 - 氢氧化物复合物)的光谱性质。EPR光谱表明,磷酸盐与经蛋白水解切割形式的酶的双铁中心结合,但不与单一多肽形式的酶的双铁中心结合。EPR光谱还表明,氟化物仅与酶的低pH形式结合,在该形式中它可能取代了一个配位水分子。氟化物和磷酸盐结合形成三元复合物的过程似乎具有协同作用。

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