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通过时间分辨空穴烧蚀光谱法观察到的溶剂对锌取代肌红蛋白构象动力学的影响。

Solvent effects on conformational dynamics of Zn-substituted myoglobin observed by time-resolved hole-burning spectroscopy.

作者信息

Shibata Y, Kurita A, Kushida T

机构信息

Department of Physics, Faculty of Science, Osaka University, Japan.

出版信息

Biochemistry. 1999 Feb 9;38(6):1789-801. doi: 10.1021/bi9815694.

Abstract

Equilibrium conformational fluctuation of Zn-substituted myoglobin (ZnMb) has been studied in the nanosecond to millisecond time region and 180-300 K temperature region by the time-resolved transient hole-burning spectroscopy. In this technique, the conformational fluctuation of the protein is observed as the temporal variation of the hole spectrum burned by irradiation of the laser pulse. ZnMb solution samples in various solvent conditions were prepared and investigated to elucidate the solvent effect on the conformational dynamics of Mb. The configuration coordinate model assuming the harmonic energy landscape has given a fairly good description of the time dependence of the hole spectra. The observed temporal behavior of both the hole shift and the hole broadening was well expressed by the same stretched exponential correlation function with a rather small and almost temperature-independent beta of 0.26. It was found that the correlation time tauc of the conformational fluctuation of ZnMb determined by this analysis depends linearly on the solvent viscosity regardless of the solvent composition and temperature. This means the almost 0 activation energy for the fluctuation process and can not be understood by simply assuming the Arrhenius-type crossing of the barriers separating the conformational substates. It is shown that this linear viscosity dependence of tauc, as well as the temperature-independent beta, is qualitatively explained in the framework of the hierarchically constrained dynamics (HCD) model [Palmer, R. G. et al. (1984) Phys. Rev. Lett. 53, 958-961] with the postulate that the dynamics in the lowest level in the HCD model corresponds in the actual system to the configuration fluctuations of the solvent molecules surrounding the protein.

摘要

通过时间分辨瞬态烧孔光谱技术,在纳秒至毫秒时间范围以及180 - 300 K温度范围内研究了锌取代肌红蛋白(ZnMb)的平衡构象波动。在该技术中,蛋白质的构象波动通过激光脉冲照射所烧蚀的孔光谱随时间的变化来观测。制备并研究了处于各种溶剂条件下的ZnMb溶液样品,以阐明溶剂对肌红蛋白构象动力学的影响。假设具有谐和能量景观的构型坐标模型对孔光谱的时间依赖性给出了相当好的描述。孔位移和孔展宽的观测时间行为都能用相同的拉伸指数相关函数很好地表示,其β值相当小且几乎与温度无关,为0.26。结果发现,通过该分析确定的ZnMb构象波动的相关时间τc与溶剂粘度呈线性关系,而与溶剂组成和温度无关。这意味着波动过程的活化能几乎为0,不能简单地通过假设Arrhenius型跨越分隔构象亚态的势垒来理解。结果表明,τc的这种线性粘度依赖性以及与温度无关的β值,在层次约束动力学(HCD)模型[Palmer, R. G.等人(1984年),《物理评论快报》53, 958 - 961]的框架内可以得到定性解释,该模型假设HCD模型最低层的动力学在实际系统中对应于围绕蛋白质的溶剂分子的构型波动。

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