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Restricted dynamics of water around a protein-carbohydrate complex: Computer simulation studies

机译:蛋白质-碳水化合物复合物周围水的受限动力学:计算机模拟研究

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Water-mediated protein-carbohydrate interaction is a complex phenomenon responsible for different biological processes in cellular environment. One of the unexplored but important issues in this area is the role played by water during the recognition process and also in controlling the microscopic properties of the complex. In this study, we have carried out atomistic molecular dynamics simulations of a protein-carbohydrate complex formed between the hyaluronan binding domain of the murine Cd44 protein and the octasaccharide hyaluronan in explicit water. Efforts have been made to explore the heterogeneous influence of the complex on the dynamic properties of water present in different regions around it. It is revealed from our analyses that the heterogeneous dynamics of water around the complex are coupled with differential time scales of formation and breaking of hydrogen bonds at the interface. Presence of a highly rigid thin layer of motionally restricted water molecules bridging the protein and the carbohydrate in the common region of the complex has been identified. Such water molecules are expected to play a crucial role in controlling properties of the complex. Importantly, it is demonstrated that the formation of the protein-carbohydrate complex affects the transverse and longitudinal degrees of freedom of the interfacial water molecules in a heterogeneous manner.
机译:水介导的蛋白质-碳水化合物相互作用是导致细胞环境中不同生物过程的复杂现象。在该领域中尚未探索但重要的问题之一是水在识别过程中所起的作用以及在控制复合物的微观性质方面的作用。在这项研究中,我们已经进行了在明确的水中鼠Cd44蛋白的透明质酸结合域与八糖透明质酸之间形成的蛋白质-碳水化合物复合物的原子分子动力学模拟。已经努力探索该复合物对其周围不同区域中水的动态特性的异质影响。从我们的分析中可以看出,复合物周围水的异质动力学与界面处氢键形成和断裂的不同时间尺度有关。已经确定存在高刚性的受运动限制的水分子薄层,其在复合物的共同区域中桥接蛋白质和碳水化合物。预期此类水分子在控制复合物的性质中起关键作用。重要的是,已证明蛋白质-碳水化合物复合物的形成以非均质方式影响界面水分子的横向和纵向自由度。

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