首页> 外文期刊>Microscopy and microanalysis: The official journal of Microscopy Society of America, Microbeam Analysis Society, Microscopical Society of Canada >Accurate recording and measurement of electron diffraction data in structural and difference Fourier studies of proteins
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Accurate recording and measurement of electron diffraction data in structural and difference Fourier studies of proteins

机译:准确记录和测量蛋白质的结构和差异傅里叶研究中的电子衍射数据

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摘要

Many of the techniques that have been developed in X-ray crystallography are being applied in electron crystallographic studies of proteins. Electron crystallography has the advantage of measuring structure factor phases directly from high resolution images with an accuracy substantially higher than is common in X-ray crystallography. However, electron diffraction amplitudes are often not as precise as those obtained in X-ray work. We discuss here some approaches to maximizing the reliability of the diffraction amplitudes through choice of exposure and data processing schemes. With accurate measurement of diffraction data, Fourier difference methods can be used in electron crystallographic studies of small, localized changes of proteins that exist in two-dimensional crystals. The mathematical basis for the power of these methods in detecting small changes is reviewed. We then discuss several issues related to optimizing the quality of the diffraction data and derive an expression for the best exposure for recording diffraction patterns. An application of Fourier difference maps in localizing drug binding sites on the protein tubulin is discussed. [References: 23]
机译:X射线晶体学中已经开发出的许多技术都用于蛋白质的电子晶体学研究中。电子晶体学的优点是可以直接从高分辨率图像中测量结构因子相位,其精度大大高于X射线晶体学中的精度。但是,电子衍射幅度通常不如X射线工作所获得的精确。我们在这里讨论通过选择曝光和数据处理方案来最大化衍射幅度可靠性的一些方法。通过精确测量衍射数据,傅里叶差分法可用于二维晶体中存在的蛋白质局部微小变化的电子晶体学研究。综述了这些方法在检测微小变化方面的强大功能的数学基础。然后,我们讨论与优化衍射数据质量有关的几个问题,并得出用于记录衍射图样的最佳曝光的表达式。讨论了傅里叶差异图在蛋白质微管蛋白上定位药物结合位点的应用。 [参考:23]

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