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Heme Structural Perturbation of PEG-Modified Horseradish Peroxidase C in Aromatic Organic Solvents Probed by Optical Absorption and Resonance Raman Dispersion Spectroscopy

机译:光学吸收和共振拉曼光谱研究芳香族有机溶剂中PEG修饰的辣根过氧化物酶C的血红素结构扰动

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摘要

The heme structure perturbation of poly(ethylene glycol)-modified horseradish peroxidase (HRP-PEG) dissolved in benzene and toluene has been probed by resonance Raman dispersion spectroscopy. Analysis of the depolarization ratio dispersion of several Raman bands revealed an increase of rhombic B1g distortion with respect to native HRP in water. This finding strongly supports the notion that a solvent molecule has moved into the heme pocket where it stays in close proximity to one of the heme's pyrrole rings. The interactions between the solvent molecule, the heme, and the heme cavity slightly stabilize the hexacoordinate high spin state without eliminating the pentacoordinate quantum mixed spin state that is dominant in the resting enzyme. On the contrary, the model substrate benzohydroxamic acid strongly favors the hexacoordinate quantum mixed spin state and induces a B2g-type distortion owing to its position close to one of the heme methine bridges. These results strongly suggest that substrate binding must have an influence on the heme geometry of HRP and that the heme structure of the enzyme-substrate complex (as opposed to the resting state) must be the key to understanding the chemical reactivity of HRP.
机译:已通过共振拉曼分散光谱探测了溶解在苯和甲苯中的聚乙二醇修饰的辣根过氧化物酶(HRP-PEG)的血红素结构扰动。几个拉曼谱带的去极化率分散分析表明,相对于水中的天然HRP,菱形B1g畸变增加。这一发现有力地证明了溶剂分子已移入血红素袋中的位置,在该位置它紧靠血红素的吡咯环之一。溶剂分子,血红素和血红素腔之间的相互作用略微稳定了六配位高自旋态,而没有消除在静止酶中占主导地位的五配位量子混合自旋态。相反,模型底物苯并异羟肟酸强烈支持六配位量子混合自旋态,并且由于其位置靠近血红素次甲基桥之一而引起B2g型畸变。这些结果强烈表明底物结合必须对HRP的血红素几何形状有影响,并且酶-底物复合物的血红素结构(与静止状态相反)必须是理解HRP的化学反应性的关键。

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