首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Nanosecond-Regime Correlation Time Scales for Equilibrium Protein Structural Fluctuations of Metal-Free Cytochrome c from Picosecond Time-Resolved Fluorescence Spectroscopy and the Dynamic Stokes Shift
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Nanosecond-Regime Correlation Time Scales for Equilibrium Protein Structural Fluctuations of Metal-Free Cytochrome c from Picosecond Time-Resolved Fluorescence Spectroscopy and the Dynamic Stokes Shift

机译:皮秒时间分辨荧光光谱法和动态斯托克斯频移的无金属细胞色素c平衡蛋白结构波动的纳秒级相关时间尺度

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We used picosecond time-resolved fluorescence spectroscopy to characterize the fluorescence Stokes shift (FSS) response function of metal-free (or free-base, fbCytc) cytochrome c under the solution conditions that favor the native states of ferricytochrome c (FeCytc) and Zn~(II)-substituted cytochrome c (ZnCytc). The intrinsic porphyrin chromophore serves in these experiments as a fluorescent probe of the structural fluctuations of the surrounding protein and solvent. Demetalation of the porphyrin destabilizes the folded structure of cytochrome c owing to the loss of the axial metal-histidine and metal-methionine bonds. Thus, these experiments examine how the time scales detected in a dynamic solvation experiment in a chromoprotein report changes in the character of motion. The FSS response function in fbCytc in water and pH 7 is well described by a biexponential response over the 100 ps to 50 ns regime with time constants of 1.4 and 9.1 ns; under similar conditions, ZnCytc exhibits a biexponential FSS response with time constants of 250 ps and 1.5 ns [Lampa-Pastirk and Beck, J. Phys. Chem. B 2004, 108, 16288]. These time constants correspond, respectively, to the correlation time scales for motions of the hydrophobic core and the solvent-contact layer of the protein. Both of the time constants observed in fbCytc are further lengthened upon addition of glycerol to the external solvent so that a significant fraction of the protein dynamics is rendered effectively static on the fluorescence time scale. The solvation reorganization energy, the time-integrated Stokes shift of the fluorescence spectrum, is reduced by about a third to 33 cm~(-1) in 50% glycerol from 43 cm~(-1) in water. These results are interpreted structurally using a model for Brownian diffusive motion with thermally activated barrier crossings on the protein-folding energy landscape. The results suggest that the mean-squared deviations of the structural fluctuations exhibited by fbCytc are nearly a factor of 10 larger than those of ZnCytc. This conclusion is consistent with the suggestion that fbCytc assumes a dynamic, partially unfolded structure with some of the characteristics of a molten globule.
机译:我们使用皮秒时间分辨荧光光谱法来表征无金属(或游离碱,fbCytc)细胞色素c在有利于亚铁色素c(FeCytc)和锌的天然状态的溶液条件下的荧光斯托克斯位移(FSS)响应功能〜(II)-取代的细胞色素c(ZnCytc)。在这些实验中,固有的卟啉生色团用作周围蛋白质和溶剂结构波动的荧光探针。由于轴向金属-组氨酸键和金属-蛋氨酸键的丧失,卟啉的脱金属使细胞色素c的折叠结构不稳定。因此,这些实验检查了在动态溶解实验中在色蛋白报告中检测到的时间尺度如何改变运动特性。 fbCytc在水和pH值为7时的FSS响应功能通过100 ps至50 ns范围内的双指数响应(时间常数为1.4和9.1 ns)很好地描述了;在相似条件下,ZnCytc表现出双指数FSS响应,时间常数为250 ps和1.5 ns [Lampa-Pastirk and Beck,J. Phys。化学B 2004,108,16288]。这些时间常数分别对应于疏水核心和蛋白质的溶剂接触层运动的相关时间标度。在将甘油添加到外部溶剂中后,在fbCytc中观察到的两个时间常数都会进一步延长,从而使很大一部分蛋白质动力学在荧光时间范围内有效地保持静态。溶剂化重组能,即荧光光谱的时间积分斯托克斯位移,在50%甘油中从43 cm〜(-1)降低了约33 cm〜(-1)。这些结果在结构上使用布朗扩散运动模型进行了解释,该模型具有蛋白质折叠能态上的热激活屏障。结果表明,fbCytc表现出的结构波动的均方差比ZnCytc差了近10倍。这一结论与fbCytc假定具有熔融小球的某些特征的动态,部分展开的结构的建议相符。

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