Shi Xuesong, Bonilla Steve, Herschlag Daniel, Harbury Pehr
Department of Biochemistry, Stanford University, Stanford, California, USA.
Department of Chemical Engineering, Stanford University, Stanford, California, USA.
Methods Enzymol. 2015;558:75-97. doi: 10.1016/bs.mie.2015.02.001. Epub 2015 Apr 2.
The conformational ensemble of a macromolecule is the complete description of the macromolecule's solution structures and can reveal important aspects of macromolecular folding, recognition, and function. However, most experimental approaches determine an average or predominant structure, or follow transitions between states that each can only be described by an average structure. Ensembles have been extremely difficult to experimentally characterize. We present the unique advantages and capabilities of a new biophysical technique, X-ray scattering interferometry (XSI), for probing and quantifying structural ensembles. XSI measures the interference of scattered waves from two heavy metal probes attached site specifically to a macromolecule. A Fourier transform of the interference pattern gives the fractional abundance of different probe separations directly representing the multiple conformation states populated by the macromolecule. These probe-probe distance distributions can then be used to define the structural ensemble of the macromolecule. XSI provides accurate, calibrated distance in a model-independent fashion with angstrom scale sensitivity in distances. XSI data can be compared in a straightforward manner to atomic coordinates determined experimentally or predicted by molecular dynamics simulations. We describe the conceptual framework for XSI and provide a detailed protocol for carrying out an XSI experiment.
大分子的构象系综是对大分子溶液结构的完整描述,能够揭示大分子折叠、识别及功能的重要方面。然而,大多数实验方法只能确定平均结构或主要结构,或者追踪各状态间的转变,而每个状态都只能用平均结构来描述。构象系综极难通过实验进行表征。我们展示了一种新型生物物理技术——X射线散射干涉术(XSI)在探测和量化结构系综上的独特优势和能力。XSI测量两个位点特异性连接到一个大分子上的重金属探针的散射波干涉。干涉图样的傅里叶变换直接给出不同探针间距的相对丰度,这些间距直接代表了大分子所占据的多种构象状态。然后,这些探针-探针距离分布可用于定义大分子的结构系综。XSI以与模型无关的方式提供精确校准的距离,对距离具有埃级别的灵敏度。XSI数据可以直接与通过实验确定或由分子动力学模拟预测的原子坐标进行比较。我们描述了XSI的概念框架,并提供了进行XSI实验的详细方案。