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Proteins in amorphous saccharide matrices: Structural and dynamical insights on bioprotection*

机译:无定形糖基质中的蛋白质:生物保护的结构和动力学见解*

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摘要

Bioprotection by sugars, and in particular trehalose peculiarity, is a relevant topic due to the implications in several fields. The underlying mechanisms are not yet clearly elucidated, and remain the focus of current investigations. Here we revisit data obtained at our lab on binary sugar/water and ternary protein/sugar/water systems, in wide ranges of water content and temperature, in the light of the current literature. The data here discussed come from complementary techniques (Infrared Spectroscopy, Molecular Dynamics simulations, Small Angle X-ray Scattering and Calorimetry), which provided a consistent description of the bioprotection by sugars from the atomistic to the macroscopic level. We present a picture, which suggests that protein bioprotection can be explained in terms of a strong coupling of the biomolecule surface to the matrix via extended hydrogen-bond networks, whose properties are defined by all components of the systems, and are strongly dependent on water content. Furthermore, the data show how carbohydrates having similar hydrogen-bonding capabilities exhibit different efficiency in preserving biostructures.
机译:由于糖的生物保护,特别是海藻糖的特殊性,由于涉及多个领域,因此是一个相关的主题。尚未清楚阐明其基本机制,并且仍然是当前研究的重点。在这里,根据当前文献,我们回顾了在实验室中获得的有关二元糖/水和三元蛋白质/糖/水系统的数据,这些数据在宽范围的水含量和温度下起作用。此处讨论的数据来自互补技术(红外光谱,分子动力学模拟,小角X射线散射和量热法),这些技术对糖从原子级到宏观级的生物保护提供了一致的描述。我们提供一张图片,这表明可以通过扩展的氢键网络将生物分子表面与基质牢固偶联来解释蛋白质的生物保护作用,氢键网络的性质由系统的所有组件定义,并且强烈依赖于水内容。此外,数据表明具有相似氢键结合能力的碳水化合物在保存生物结构方面如何表现出不同的效率。

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