Réat V, Dunn R, Ferrand M, Finney J L, Daniel R M, Smith J C
Department of Physics and Astronomy, University College London, Gower Street, London WCIE, 6BT, England.
Proc Natl Acad Sci U S A. 2000 Aug 29;97(18):9961-6. doi: 10.1073/pnas.97.18.9961.
A transition as a function of increasing temperature from harmonic to anharmonic dynamics has been observed in globular proteins by using spectroscopic, scattering, and computer simulation techniques. We present here results of a dynamic neutron scattering analysis of the solvent dependence of the picosecond-time scale dynamic transition behavior of solutions of a simple single-subunit enzyme, xylanase. The protein is examined in powder form, in D(2)O, and in four two-component perdeuterated single-phase cryosolvents in which it is active and stable. The scattering profiles of the mixed solvent systems in the absence of protein are also determined. The general features of the dynamic transition behavior of the protein solutions follow those of the solvents. The dynamic transition in all of the mixed cryosolvent-protein systems is much more gradual than in pure D(2)O, consistent with a distribution of energy barriers. The differences between the dynamic behaviors of the various cryosolvent protein solutions themselves are remarkably small. The results are consistent with a picture in which the picosecond-time scale atomic dynamics respond strongly to melting of pure water solvent but are relatively invariant in cryosolvents of differing compositions and melting points.
通过光谱、散射和计算机模拟技术,在球状蛋白质中观察到了随着温度升高从简谐动力学向非简谐动力学的转变。我们在此展示了对一种简单单亚基酶木聚糖酶溶液皮秒时间尺度动态转变行为的溶剂依赖性进行动态中子散射分析的结果。以粉末形式在重水(D₂O)以及四种双组分全氘代单相冷冻溶剂中对该蛋白质进行了研究,在这些溶剂中蛋白质具有活性且稳定。还测定了不存在蛋白质时混合溶剂体系的散射曲线。蛋白质溶液动态转变行为的一般特征与溶剂的相符。所有混合冷冻溶剂 - 蛋白质体系中的动态转变比在纯重水中要平缓得多,这与能垒分布一致。各种冷冻溶剂蛋白质溶液自身动态行为之间的差异非常小。这些结果与这样一种情况相符,即皮秒时间尺度的原子动力学对纯水溶剂的熔化有强烈响应,但在不同组成和熔点的冷冻溶剂中相对不变。