Graduate School of Pharmaceutical Sciences, Tohoku University, Aobayama, Sendai 980-8578, Japan.
Biopolymers. 2010 Jan;93(1):113-20. doi: 10.1002/bip.21308.
Lactoperoxidase (LPO), a mammalian secretory heme peroxidase, catalyzes the oxidation of thiocyanate by hydrogen peroxide to produce hypothiocyanate, an antibacterial agent. Although LPO is known to be activated at acidic pH and in the presence of iodide, the structural basis of the activation is not well understood. We have examined the effects of pH and iodide concentration on the catalytic activity and the structure of LPO. Electrochemical and colorimetric assays have shown that the catalytic activity is maximized at pH 4.5. The heme Soret absorption band exhibits a small red-shift at pH 5.0 upon acidification, which is ascribable to a structural transition from a neutral to an acidic form. Resonance Raman spectra suggest that the heme porphyrin core is slightly contracted and the Fe-His bond is strengthened in the acidic form compared to the neutral form. The structural change of LPO upon activation at acidic pH is similar to that observed for myeloperoxidase, another mammalian heme peroxidase, upon activation at neutral pH. Binding of iodide enhances the catalytic activity of LPO without affecting either the optimum pH of activity or the heme structure, implying that the iodide binding occurs at a protein site away from the heme-linked protonation site.
乳过氧化物酶(LPO)是一种哺乳动物分泌的血红素过氧化物酶,它能催化过氧化氢将硫氰酸盐氧化为具有抑菌作用的次碘酸盐。尽管已知 LPO 在酸性 pH 值和存在碘化物的条件下被激活,但激活的结构基础尚不清楚。我们研究了 pH 值和碘化物浓度对 LPO 催化活性和结构的影响。电化学和比色测定表明,催化活性在 pH4.5 时达到最大值。酸化时,血红素 Soret 吸收带发生较小的红移,归因于从中性形式到酸性形式的结构转变。共振拉曼光谱表明,与中性形式相比,酸性形式下血红素卟啉环略有收缩,Fe-His 键增强。在酸性 pH 值下激活 LPO 时的结构变化与中性 pH 值下激活另一种哺乳动物血红素过氧化物酶——髓过氧化物酶时观察到的变化相似。碘化物的结合增强了 LPO 的催化活性,而不影响活性的最适 pH 值或血红素结构,这意味着碘化物的结合发生在远离血红素连接的质子化位点的蛋白质部位。