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Water in the hydrated protein powders: Dynamic and structure

机译:水合蛋白粉的水:动态和结构

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摘要

It is not an understatement to say that the interplay between water and protein is a fundamental aspect of life. The vitality of an organism depends on the functionality of its biological machinery, and this, in turn, is mediated in water. Yet, we understand surprisingly little about the nature of the interface between bulk water and the protein. On the one hand, we know that the nature of the bulk water is dominated by the existence of H-bonding and H-bonded networks. On the other hand, the protein surface, where much of the bioactivity is centered, is a complex landscape of hydrophilic and hydrophobic elements. So how does the interface between these two entities work and how do they influence each other? The question is important because if one understands how a particular protein interface influences the dynamics of the water, it then becomes an easily accessible marker for similar behavior in other protein systems. The dielectric relaxation of hydrated proteins with different structures, lysozyme, collagen, and phycocyanin, has been reviewed in this paper. The dynamics of hydrated water was analyzed in terms of orientation and the ionic defect migration model. This approach enables to characterize the microscopic relaxation mechanism of the dynamics of hydration water on the different structures of the protein. In addition, our model is also capable of characterizing not only hydrated proteins but also polymer-water systems. Published under license by AIP Publishing.
机译:说,水和蛋白质之间的相互作用是生命的基本方面并不是轻描淡写。生物体的活力取决于其生物机制的功能,而这种功能又在水中介导。然而,我们对散装水和蛋白质之间的界面的性质令人惊讶地了解。一方面,我们知道散装水的性质是由H键合和H键合网络的存在。另一方面,蛋白质表面,其中大部分生物活性以居中为中心,是亲水和疏水元素的复杂景观。那么这两个实体之间的界面如何工作以及它们如何相互影响?问题很重要,因为如果一个人理解特定的蛋白质接口如何影响水的动态,那么它将成为其他蛋白质系统中类似行为的易于访问标记。本文综述了具有不同结构,溶菌酶,胶原蛋白的水合蛋白质的介电弛豫,并在本文中得到了植物蛋白。在取向和离子缺陷迁移模型方面分析了水合水的动态。这种方法使得能够表征水合水动力学对蛋白质不同结构的微观弛豫机制。此外,我们的模型还能够表征不仅是水合蛋白,还能够表征聚合物 - 水系统。通过AIP发布在许可证下发布。

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