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首页> 外文期刊>European Biophysics Journal >Dynamics of C-phycocyanin in various deuterated trehalose/water environments measured by quasielastic and elastic neutron scattering
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Dynamics of C-phycocyanin in various deuterated trehalose/water environments measured by quasielastic and elastic neutron scattering

机译:拟弹性和弹性中子散射测量的氘化海藻糖/水环境中C-藻蓝蛋白的动力学

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摘要

The molecular understanding of protein stabilization by the disaccharide trehalose in extreme temperature or hydration conditions is still debated. In the present study, we investigated the role of trehalose on the dynamics of the protein C-phycocyanin (C-PC) by neutron scattering. To single out the motions of C-PC hydrogen (H) atoms in various trehalose/water environments, measurements were performed in deuterated trehalose and heavy water (D2O). We report that trehalose decreases the internal C-PC dynamics, as shown by a reduced diffusion coefficient of protein H atoms. By fitting the Elastic Incoherent Structure Factor-which gives access to the "geometry" of the internal proton motions-with the model of diffusion inside a sphere, we found that the presence of trehalose induces a significantly higher proportion of immobile C-PC hydrogens. We investigated, by elastic neutron scattering, the mean square displacements (MSDs) of deuterated trehalose/D2O-embedded C-PC as a function of temperature in the range of 40-318 K. Between 40 and similar to 225 K, harmonic MSDs of C-PC are slightly smaller in samples containing trehalose. Above a transition temperature of similar to 225 K, we observed anharmonic motions in all trehalose/water-coated C-PC samples. In the hydrated samples, MSDs are not significantly changed by addition of 15% trehalose but are slightly reduced by 30% trehalose. In opposition, no dynamical transition was detected in dry trehalose-embedded C-PC, whose hydrogen motions remain harmonic up to 318 K. These results suggest that a role of trehalose would be to stabilize proteins by inhibiting some fluctuations at the origin of protein unfolding and denaturation.
机译:在极端温度或水合条件下,二糖海藻糖对蛋白质稳定的分子理解仍在争论中。在本研究中,我们研究了海藻糖对中子散射蛋白C-藻蓝蛋白(C-PC)动力学的影响。为了找出C-PC氢(H)原子在各种海藻糖/水环境中的运动,在氘化海藻糖和重水(D2O)中进行了测量。我们报道海藻糖降低了内部C-PC动力学,如减少的蛋白H原子的扩散系数所示。通过使用弹性不相干结构因子(可访问内部质子运动的“几何形状”)与球体内的扩散模型进行拟合,我们发现海藻糖的存在诱导了更高比例的固定C-PC氢。我们通过弹性中子散射研究了氘化海藻糖/ D2O嵌入C-PC的均方位移(MSD)与温度在40-318 K之间的关系。在40到225 K之间,谐波MSD含有海藻糖的样品中的C-PC稍小。在接近225 K的转变温度以上,我们观察到所有海藻糖/水包被的C-PC样品的非谐运动。在水合样品中,添加15%海藻糖不会显着改变MSD,但30%海藻糖会稍微降低MSD。相反,在嵌入海藻糖的干燥C-PC中未检测到动态跃迁,其氢运动在318 K之前仍保持谐波。这些结果表明,海藻糖的作用是通过抑制蛋白质展开起点的某些波动来稳定蛋白质。和变性。

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