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Zaccai neutron resilience and site-specific hydration dynamics in a globular protein*

机译:球蛋白中Zaccai中子的回弹力和特定位置的水合动力学*

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摘要

A discussion is presented of contributions of the Zaccai group to the understanding of flexibility in biological macromolecules using dynamic neutron scattering. The concept of resilience as introduced by Zaccai is discussed and investigated using molecular dynamics simulation on camphor-bound cytochrome P450. The resilience of hydrophilic residues is found to be more strongly affected by hydration than that of hydrophobic counterparts. The hydration-induced softening of protein propagates from the surface into the dry core. Moreover, buried hydrophilic residues behave more like those exposed on the protein surface, and are different from their hydrophobic counterparts.
机译:讨论了Zaccai小组对使用动态中子散射的生物大分子灵活性的理解的贡献。 Zaccai引入了弹性概念,并通过对樟脑结合的细胞色素P450进行分子动力学模拟进行了研究。发现亲水性残基的回弹力比疏水性对应物的回弹力更强烈地受到水合作用的影响。水合诱导的蛋白质软化作用从表面传播到干燥核心。此外,掩埋的亲水性残基的行为更像暴露在蛋白质表面的亲水性残基,并且与疏水性残基不同。

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