Eyles Stephen J, Kaltashov Igor A
Department of Polymer Science and Engineering, University of Massachusetts, Amherst, MA 01003, USA.
Methods. 2004 Sep;34(1):88-99. doi: 10.1016/j.ymeth.2004.03.015.
It is clear that merely knowing the structure of a protein alone is not sufficient to fully understand its behavior: knowledge also of the dynamic events that occur within proteins is vital to elucidate their function and folding. In recent years, mass spectrometry has come to the forefront as a powerful biophysical method, which can shed light both on the structure and dynamics of proteins. Hydrogen exchange monitored by mass spectrometry is a highly sensitive marker of the backbone dynamics in solution that, combined with gas phase dissociation techniques, can provide a high resolution tool to locate the dynamic regions of a protein. Additionally, charge state distributions in electrospray mass spectra yield insight into the nature and population of alternate structural states present at equilibrium. In this paper, we describe several applications of these methodologies to probe the dynamic events key to the structure, folding, and biological functions of proteins.
显然,仅仅了解蛋白质的结构本身并不足以完全理解其行为:了解蛋白质内部发生的动态事件对于阐明其功能和折叠也至关重要。近年来,质谱作为一种强大的生物物理方法已走到前沿,它能够揭示蛋白质的结构和动力学。通过质谱监测的氢交换是溶液中主链动力学的高度敏感标记,与气相解离技术相结合,可以提供一种高分辨率工具来定位蛋白质的动态区域。此外,电喷雾质谱中的电荷态分布有助于深入了解平衡状态下存在的交替结构状态的性质和数量。在本文中,我们描述了这些方法的几种应用,以探究对蛋白质的结构、折叠和生物学功能至关重要的动态事件。