PDZ域
电场
变构调节
微秒
蛋白质结构
生物物理学
物理
分子力学
功能(生物学)
蛋白质功能
化学
分子动力学
生物
核磁共振
生物化学
光学
进化生物学
量子力学
酶
基因
作者
Doeke R. Hekstra,K. Ian White,Michael Socolich,Robert Henning,V. Šrajer,Rama Ranganathan
出处
期刊:Nature
[Springer Nature]
日期:2016-12-06
卷期号:540 (7633): 400-405
被引量:188
摘要
The internal mechanics of proteins-the coordinated motions of amino acids and the pattern of forces constraining these motions-connects protein structure to function. Here we describe a new method combining the application of strong electric field pulses to protein crystals with time-resolved X-ray crystallography to observe conformational changes in spatial and temporal detail. Using a human PDZ domain (LNX2PDZ2) as a model system, we show that protein crystals tolerate electric field pulses strong enough to drive concerted motions on the sub-microsecond timescale. The induced motions are subtle, involve diverse physical mechanisms, and occur throughout the protein structure. The global pattern of electric-field-induced motions is consistent with both local and allosteric conformational changes naturally induced by ligand binding, including at conserved functional sites in the PDZ domain family. This work lays the foundation for comprehensive experimental study of the mechanical basis of protein function.
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