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在酶促周转过程中,对硝基苯磷酸与牛脾紫色酸性磷酸酶中双核Fe(III)-M(II)中心非桥连配位的证据。

Evidence for nonbridged coordination of p-nitrophenyl phosphate to the dinuclear Fe(III)-M(II) center in bovine spleen purple acid phosphatase during enzymatic turnover.

作者信息

Merkx M, Pinkse M W, Averill B A

机构信息

E.C. Slater Institute, Biocentrum Amsterdam, University of Amsterdam, The Netherlands.

出版信息

Biochemistry. 1999 Aug 3;38(31):9914-25. doi: 10.1021/bi9904454.

Abstract

The pH dependence of the catalytic parameters k(cat) and K(M) has been determined for the Fe(III)Fe(II)- and Fe(III)Zn(II)-forms of bovine spleen purple acid phosphatase (BSPAP). The parameter k(cat) was found to be maximal at pH 6.3, and a pK(a) of 5.4-5.5 was obtained for the acidic limb of the k(cat) vs pH profile. Two different EPR spectra were detected for the phosphate complex of the mixed-valent diiron enzyme; their relative amounts depended on the pH, with an apparent pK(a) of 6. The EPR spectra of Fe(III)Fe(II)-BSPAP.PO(4) and Fe(III)Zn(II)-BSPAP.PO(4) at pH 5.0 are similar to those previously reported for Fe(III)Fe(II)-Uf.PO(4) and Fe(III)Zn(II)-Uf.PO(4) complexes at pH 5.0. At higher pH, a new Fe(III)Fe(II)-BSPAP.PO(4) species is formed, with apparent g-values of 1.94, 1.71, and 1.50. The EPR spectrum of Fe(III)Zn(II)-BSPAP does not show significant changes upon addition of phosphate up to 30 mM at pH 6.5, suggesting that phosphate binds only to the spectroscopically silent Zn(II). To determine whether the phosphate complexes were good structural models for the enzyme substrate complexes, these complexes were studied using rapid-freeze EPR and stopped-flow optical spectroscopy. The stopped-flow studies showed the absence of burst kinetics at pH 7.0, which indicates that substrate hydrolysis is rate limiting, rather than phosphate release. The EPR spectrum of Fe(III)Fe(II)-BSPAP.p-NPP is similar, but not identical, to that of the corresponding phosphate complex, both at pH 5 and pH 6.5. We propose that both phosphate and p-NPP bridge the two metal ions at low pH. At higher pH where the enzyme is optimally active, we propose that hydroxide competes with phosphate and p-NPP for coordination to Fe(III) and that both phosphate and p-NPP coordinate only to the divalent metal ion.

摘要

已测定了牛脾紫色酸性磷酸酶(BSPAP)的Fe(III)Fe(II)型和Fe(III)Zn(II)型的催化参数k(cat)和K(M)对pH的依赖性。发现参数k(cat)在pH 6.3时最大,并且对于k(cat)与pH曲线的酸性部分,获得的pK(a)为5.4 - 5.5。对于混合价态二铁酶的磷酸盐复合物检测到两种不同的电子顺磁共振(EPR)光谱;它们的相对含量取决于pH,表观pK(a)为6。pH 5.0时Fe(III)Fe(II)-BSPAP.PO(4)和Fe(III)Zn(II)-BSPAP.PO(4)的EPR光谱与之前报道的pH 5.0时Fe(III)Fe(II)-Uf.PO(4)和Fe(III)Zn(II)-Uf.PO(4)复合物的光谱相似。在较高pH下,形成了一种新的Fe(III)Fe(II)-BSPAP.PO(4)物种,其表观g值为1.94、1.71和1.50。在pH 6.5时,向Fe(III)Zn(II)-BSPAP中添加高达30 mM的磷酸盐后,其EPR光谱未显示出显著变化,这表明磷酸盐仅与光谱学上沉默的Zn(II)结合。为了确定磷酸盐复合物是否是酶底物复合物的良好结构模型,使用快速冷冻EPR和停流光学光谱对这些复合物进行了研究。停流研究表明在pH 7.0时不存在爆发动力学,这表明底物水解是限速步骤,而不是磷酸盐释放。在pH 5和pH 6.5时,Fe(III)Fe(II)-BSPAP.p-NPP的EPR光谱与相应的磷酸盐复合物的光谱相似但不相同。我们提出在低pH下磷酸盐和对硝基苯磷酸酯(p-NPP)都桥接两个金属离子。在酶具有最佳活性的较高pH下,我们提出氢氧根与磷酸盐和p-NPP竞争与Fe(III)配位,并且磷酸盐和p-NPP都仅与二价金属离子配位。

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