Hill Kamisha R, Bailey Breanna G, Mouton Meghan B, Williamson Heather R
Department of Chemistry, Xavier University of Louisiana, 1 Drexel Dr., New Orleans, Louisiana 70125, United States.
ACS Omega. 2022 Jun 16;7(26):22906-22914. doi: 10.1021/acsomega.2c02798. eCollection 2022 Jul 5.
The non-native oxidation of horse heart myoglobin with hydrogen peroxide produces compound II which autoreduces by utilizing an internal oxidation site. Here, we utilize full UV-visible time-dependent kinetics with global kinetic singular value decomposition analysis to explore the mechanism and uncover more detail about the high-valent heme spectral features. By varying the hydrogen peroxide and myoglobin concentration, we were able to uncover more detailed spectra of myoglobin compound II and the autoreduction rate under several different pH conditions. The compound II spectra demonstrate pH-dependent features with an inflection point around pH 5.7 ± 0.1. The rate of autoreduction of compound II, , increases with lower pH with a half-power proton dependence and no indication of a p > 3.9 ± 0.2, indicating that the autoreduction is still dependent on the protonation of the ferryl oxo species. The also demonstrates both hydrogen peroxide and myoglobin dependency. At myoglobin concentrations greater than 6.6 μM, the is myoglobin-independent, but for lower concentrations, a pH-sensitive concentration dependence is seen.
用过氧化氢对马心脏肌红蛋白进行非天然氧化会产生化合物II,该化合物通过利用内部氧化位点进行自动还原。在此,我们利用全紫外可见时间相关动力学以及全局动力学奇异值分解分析来探究其机制,并揭示更多关于高价血红素光谱特征的细节。通过改变过氧化氢和肌红蛋白的浓度,我们能够在几种不同的pH条件下揭示肌红蛋白化合物II更详细的光谱以及自动还原速率。化合物II的光谱显示出pH依赖性特征,在pH 5.7±0.1左右有一个拐点。化合物II的自动还原速率 随着pH降低而增加,具有半幂质子依赖性,且在p > 3.9±0.2时无迹象表明其依赖性,这表明自动还原仍依赖于高铁氧物种的质子化。 也显示出对过氧化氢和肌红蛋白的依赖性。在肌红蛋白浓度大于6.6 μM时, 与肌红蛋白无关,但对于较低浓度,则观察到pH敏感的浓度依赖性。