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来自原子模型的低分辨率密度图:如何“后退”一步可能是“前进”一步。

Low-resolution density maps from atomic models: how stepping "back" can be a step "forward".

作者信息

Belnap D M, Kumar A, Folk J T, Smith T J, Baker T S

机构信息

Department of Biological Sciences, Purdue University, West Lafayette, Indiana 47907-1392, USA.

出版信息

J Struct Biol. 1999 Apr-May;125(2-3):166-75. doi: 10.1006/jsbi.1999.4093.

Abstract

Atomic-resolution structures have had a tremendous impact on modern biological science. Much useful information also has been gleaned by merging and correlating atomic-resolution structural details with lower-resolution (15-40 A), three-dimensional (3D) reconstructions computed from images recorded with cryo-transmission electron microscopy (cryoTEM) procedures. One way to merge these structures involves reducing the resolution of an atomic model to a level comparable to a cryoTEM reconstruction. A low-resolution density map can be derived from an atomic-resolution structure by retrieving a set of atomic coordinates editing the coordinate file, computing structure factors from the model coordinates, and computing the inverse Fourier transform of the structure factors. This method is a useful tool for structural studies primarily in combination with 3D cryoTEM reconstructions. It has been used to assess the quality of 3D reconstructions, to determine corrections for the phase-contrast transfer function of the transmission electron microscope, to calibrate the dimensions and handedness of 3D reconstructions, to produce difference maps, to model features in macromolecules or macromolecular complexes, and to generate models to initiate model-based determination of particle orientation and origin parameters for 3D reconstruction.

摘要

原子分辨率结构对现代生物科学产生了巨大影响。通过将原子分辨率结构细节与较低分辨率(15 - 40埃)的三维(3D)重建结果进行合并和关联,也收集到了许多有用信息,这些3D重建是根据低温透射电子显微镜(cryoTEM)程序记录的图像计算得出的。合并这些结构的一种方法是将原子模型的分辨率降低到与cryoTEM重建相当的水平。低分辨率密度图可通过从原子分辨率结构中获取一组原子坐标、编辑坐标文件、根据模型坐标计算结构因子以及计算结构因子的逆傅里叶变换来推导得出。该方法主要与3D cryoTEM重建结合使用,是结构研究的有用工具。它已被用于评估3D重建的质量、确定透射电子显微镜相衬传递函数的校正、校准3D重建的尺寸和手性、生成差分图、对大分子或大分子复合物中的特征进行建模以及生成模型以启动基于模型的3D重建粒子取向和原点参数的确定。

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