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Symmetry-adapted spherical harmonics method for high-resolution 3D single-particle reconstructions

机译:高分辨率3D单粒子重构的对称自适应球谐函数方法

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Three-dimensional (3D) reconstruction is the last and an essential step toward high-resolution structural determination in single-particle cryo-electron microscopy (cryoEM). We have implemented a new algorithm for reconstructing 3D structures of macromolecular complexes with icosahedral symmetry from cryoEM images. Icosahedral symmetry-adapted functions (ISAFs) are used to interpolate structural factors in the reciprocal space to generate a 3D reconstruction in spherical coordinates. In our implementation, we introduced a recursive method for deriving higher order ISAFs from three lower order seed functions. We demonstrate improvements of our new method in both the noise suppression and the effective resolution in 3D reconstruction over the commonly used Fourier-Bessel synthesis method introduced by Crowther et al. three decades ago. Our 3D reconstruction method can be extended to macromolecular complexes with other symmetry types and is thus likely to impact future high-resolution cryoEM single-particle reconstruction efforts in general. (c) 2007 Elsevier Inc. All rights reserved.
机译:三维(3D)重建是单粒子低温电子显微镜(cryoEM)中高分辨率结构确定的最后一步,也是必不可少的步骤。我们已经实现了一种新算法,可从cryoEM图像中重建具有二十面体对称性的大分子复合物的3D结构。二十面体对称自适应函数(ISAF)用于对等空间中的结构因子进行插值,以在球坐标中生成3D重建。在我们的实现中,我们引入了一种递归方法,用于从三个低阶种子函数中导出高阶ISAF。与Crowther等人介绍的常用Fourier-Bessel合成方法相比,我们证明了我们的新方法在噪声抑制和3D重建有效分辨率方面的改进。三十年前。我们的3D重建方法可以扩展到具有其他对称类型的大分子复合物,因此通常可能会影响未来的高分辨率cryoEM单粒子重建工作。 (c)2007 Elsevier Inc.保留所有权利。

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