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高铁肌红蛋白和脱氧肌红蛋白晶体中血红素铁的动力学

Dynamics of heme iron in crystals of metmyoglobin and deoxymyoglobin.

作者信息

Bauminger E R, Cohen S G, Nowik I, Ofer S, Yariv J

出版信息

Proc Natl Acad Sci U S A. 1983 Feb;80(3):736-40. doi: 10.1073/pnas.80.3.736.

Abstract

The 57Fe gamma-ray resonance absorption spectra have been measured in crystals of metmyoglobin and deoxymyoglobin over a wide range of temperatures. Above a critical temperature common to both proteins (220 K), the dynamics of heme iron display a dramatic change, in that two kinds of thermal fluctuations come into play--a fast fluctuation associated with a steep decrease of the total fluctuation of characteristic time 10(-8) sec, associated with bounded diffusive motion. By using both discrete jump and continuous diffusion models, the latter based on the Brownian motion of an overdamped harmonic oscillator, the essential parameters of the iron motion (mean square displacement and jump frequency or diffusion constant) can be derived as a function of temperature. Thus, for deoxy Mb at 288 K, the mean square displacement for the fast fluctuation is about 6 X 10(-2) A2 and for the diffusive motion is 1.6 X 10(-2) A2; the diffusion constant is 4 X 10(-10) cm2/sec. The diffusive process is associated with an activation energy of about 0.75 kcal/mol. Although the same general kinds of phenomena are observed in crystals of MetMb and deoxy Mb, significant differences in behavior are found, which suggest that the main dynamical phenomenon observed reflects internal large-scale motions of the protein.

摘要

在不同温度下测量了高铁肌红蛋白和脱氧肌红蛋白晶体的57Feγ射线共振吸收光谱。在两种蛋白质共有的临界温度(220K)以上,血红素铁的动力学表现出显著变化,即两种热涨落起作用——一种快速涨落与特征时间为10^(-8)秒的总涨落急剧下降相关,与受限扩散运动有关。通过使用离散跳跃和连续扩散模型(后者基于过阻尼谐振子的布朗运动),可以得出铁运动的基本参数(均方位移和跳跃频率或扩散常数)作为温度的函数。因此,对于288K下的脱氧肌红蛋白,快速涨落的均方位移约为6×10^(-2) Ų,扩散运动的均方位移为1.6×10^(-2) Ų;扩散常数为4×10^(-10) cm²/秒。扩散过程的活化能约为0.75千卡/摩尔。虽然在高铁肌红蛋白和脱氧肌红蛋白晶体中观察到相同类型的一般现象,但发现行为上存在显著差异,这表明观察到的主要动力学现象反映了蛋白质的内部大规模运动。

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