人口
化学
蛋白质结构
蛋白质稳定性
激发态
序列(生物学)
蛋白质折叠
生物物理学
蛋白质动力学
核磁共振波谱
结构生物学
结晶学
理论(学习稳定性)
化学物理
蛋白质聚集
章节(排版)
蛋白质测序
构象集合
原籍国
蛋白质设计
肽序列
分子动力学
共振(粒子物理)
蛋白质-蛋白质相互作用
构象变化
标识
DOI:10.1146/annurev-biophys-022224-105324
摘要
This review focuses on the use of high-pressure nuclear magnetic resonance (HP NMR) to map local protein stability and conformational landscapes, with an emphasis on the population and characteristics of protein excited states. Section 1 discusses the volumetric properties of proteins in the pressure–temperature plane, highlighting the underlying mechanisms of pressure effects, the magnitude of the volume changes upon unfolding, their temperature dependence, and the nature of the unfolded state at high pressure. In Section 2, NMR-detected, pressure-induced equilibrium unfolding of proteins is discussed. Section 3 covers how HP NMR can reveal the complexity of protein conformational landscapes, the population of excited states, and the local stability distribution across the structure. Studies exploring the sequence determinants of these landscapes are presented. Of particular interest are the sequence determinants that define the excited states implicated in functional dynamics, one of the most important unresolved issues in protein science.
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