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Ecology of Protein Dynamics

机译:蛋白质动力学生态学

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Biological macromolecules evolved over billions of years to achieve dynamic structures adapted to their function. Appropriate structure and appropriate dynamics are necessary for biological activity. Intra and inter protein interactions are modulated by weak forces, which depend sensitively on the environment. These forces define the active fold of the macromolecule and also its dynamics about the time-average structure. Dynamics, however, is more sensitive than structure to environmental factors such as solvent, temperature or pressure. Because of inappropriate dynamics, a macromolecule can be inactive in conditions in which its correct structure is maintained and stable. It is essential, therefore, to take into account the environmental context in experimental or simulation studies of protein dynamics. Neutron scattering can provide unique experimental data to underpin molecular dynamics calculations in this context.
机译:生物大分子进化了数十亿年,以实现适应其功能的动态结构。适当的结构和适当的动力学对于生物活性是必需的。蛋白质内部和蛋白质间的相互作用受到弱力的调节,该弱力敏感地取决于环境。这些力定义了大分子的活性折叠,也定义了其关于时间平均结构的动力学。但是,对于环境因素(例如溶剂,温度或压力),动力学比结构更敏感。由于不适当的动力学,大分子在保持其正确结构和稳定的条件下可能会失活。因此,在蛋白质动力学的实验或模拟研究中必须考虑环境因素。在这种情况下,中子散射可以提供独特的实验数据来支持分子动力学计算。

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