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首页> 外文期刊>Zeitschrift fur Physikalische Chemie: International Journal of Research in Physical Chemistry and Chemical Physics >Myoglobin and Apomyoglobin in their Native, Molten Globule and Acid-Denaturated States. A Dielectric Relaxation Study
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Myoglobin and Apomyoglobin in their Native, Molten Globule and Acid-Denaturated States. A Dielectric Relaxation Study

机译:肌红蛋白和平滑肌红蛋白处于天然,熔融小球和酸变性状态。介电弛豫研究

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The acid-induced unfolding of myoglobin and its haem-free derivative apo-myoglobin is studied by broadband dielectric relaxation spectroscopy at pH values near 5, 4 and 2, which reflect the transition N -> MG -> U_A from the native state (N) via a molten globule state (MG) to an acid-unfolded state (U_A). Spectral changes are singled out by considering difference spectra for the transitions N -> MG and N -> U_A. A pronounced increase of the amplitude of the tumbling motion of holo-myoglobin and apo-myoglobin in the sequence N -> MG -> U_A reflects the increase of their electrical dipole moments by progressive unfolding. A distinct high-frequency shoulder of the tumbling mode indicates an enhanced internal protein dynamics in the unfolded states. The calculated Stokes radii confirm a compact nature of the MG state and a large increase in size of the U_A state relative to the native state. In the native state the Stokes radii deduced from the dielectric spectra agree fairly well with those deduced from dynamic light scattering. In the MG state, and particularly in the U_A state, the Stokes radii determined by light scattering are markedly larger than those determined by dielectric relaxation. The difference is attributed to aggregation of the unfolded species, which affects dynamic light scattering more than dielectric relaxation. In the high-frequency regime, the dielectric spectra indicate that unfolding enhances the number of water molecules showing bulk-like dynamics, but the effect is rather weak.
机译:酸介导的肌红蛋白及其无血红素载脂蛋白-肌红蛋白的解离通过宽带介电弛豫光谱法在pH值接近5、4和2的条件下进行了研究,这反映了从原始状态(N )通过熔融小球状态(MG)转变为酸未折叠状态(U_A)。通过考虑跃迁N-> MG和N-> U_A的差异光谱来选择光谱变化。整体肌红蛋白和脱辅基肌红蛋白的滚动运动幅度在N-> MG-> U_A序列中的显着增加反映了通过逐步展开它们的电偶极矩的增加。翻滚模式的一个独特的高频位置表明在展开状态下内部蛋白质动力学增强。计算出的斯托克斯半径证实了MG状态的紧凑性质以及U_A状态相对于原始状态的大小的大幅增加。在原始状态下,从介电谱得出的斯托克斯半径与从动态光散射得出的斯托克斯半径非常吻合。在MG状态下,特别是在U_A状态下,由光散射确定的斯托克斯半径明显大于由介电弛豫确定的斯托克斯半径。差异归因于未折叠物质的聚集,这对动态光散射的影响大于介电弛豫。在高频状态下,介电谱表明,展开会增加水分子的数量,这些分子显示出类似块的动力学,但效果却很弱。

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