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人髓过氧化物酶在中性和酸性pH值下的X射线吸收和共振拉曼光谱

X-ray absorption and resonance raman spectroscopy of human myeloperoxidase at neutral and acid pH.

作者信息

Yue K T, Taylor K L, Kinkade J M, Sinclair R B, Powers L S

机构信息

National Center for the Design of Molecular Function, Utah State University, Logan 85322-4630, USA.

出版信息

Biochim Biophys Acta. 1997 Apr 4;1338(2):282-94. doi: 10.1016/s0167-4838(96)00210-5.

Abstract

Myeloperoxidase (MPO), an important enzyme in the oxygen-dependent host defense system of human polymorphonuclear leukocytes, utilizes hydrogen peroxide to catalyze the production of hypochlorous acid, an oxidizing bactericidal agent. While MPO shows significant sequence homology with other peroxidases and this homology is particularly striking among the active-site residues, MPO exhibits unusual spectral features and the unique ability to catalyze the oxidation of chloride ions. We have investigated the MPO active-site with X-ray absorption (XAS) and resonance Raman (RRS) spectroscopies at neutral pH and also at the physiological acidic pH (pH approximately 3) and have compared these results with those of horseradish peroxidase (HRP). At pH 7.5, XAS results show that the iron heme active site is 6-coordinate where the distal ligand is likely nitrogen or oxygen, but not sulfur. The heme is distorted compared to HRP, other peroxidases, and heme compounds, but at pH approximately 3, the distal ligand is lost and the heme is less distorted. RRS results under identical pH conditions show that the skeletal core-size sensitive modes and v3 are shifted to higher frequency at pH approximately 3 indicating a 6- to 5-coordination change of high spin ferric heme. In addition, a new band at 270 cm(-1) is observed at pH approximately 3 which is consistent with the loss of the sixth ligand. The higher symmetry of the heme at pH approximately 3 is reflected by a single v4 mode in the (RRS) spectrum. HRP also loses its loosely associated distal water at this pH, but little change in heme distortion is observed. This change suggests that loss of the distal ligand in MPO releases stress on the heme which may facilitate binding of chloride ion.

摘要

髓过氧化物酶(MPO)是人类多形核白细胞氧依赖性宿主防御系统中的一种重要酶,它利用过氧化氢催化产生次氯酸,一种氧化性杀菌剂。虽然MPO与其他过氧化物酶具有显著的序列同源性,且这种同源性在活性位点残基中尤为突出,但MPO表现出不同寻常的光谱特征以及催化氯离子氧化的独特能力。我们利用X射线吸收(XAS)光谱和共振拉曼(RRS)光谱,在中性pH以及生理酸性pH(pH约为3)条件下对MPO活性位点进行了研究,并将这些结果与辣根过氧化物酶(HRP)的结果进行了比较。在pH 7.5时,XAS结果表明铁血红素活性位点为六配位,其中远端配体可能是氮或氧,而非硫。与HRP、其他过氧化物酶和血红素化合物相比,该血红素发生了扭曲,但在pH约为3时,远端配体丢失,血红素的扭曲程度减小。相同pH条件下的RRS结果表明,在pH约为3时,对骨架核心尺寸敏感的模式和v3向更高频率移动,表明高自旋铁血红素发生了从六配位到五配位的变化。此外,在pH约为3时观察到一个270 cm⁻¹的新谱带,这与第六个配体的丢失一致。在(RRS)光谱中,pH约为3时血红素更高的对称性由单一的v4模式体现。HRP在该pH下也会失去其松散结合的远端水,但未观察到血红素扭曲有明显变化。这种变化表明,MPO中远端配体的丢失减轻了血红素上的应力,这可能有利于氯离子的结合。

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