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对称适配函数法在八面体生物大分子三维重建中的应用。

Application of symmetry adapted function method for three-dimensional reconstruction of octahedral biological macromolecules.

作者信息

Zeng Songjun, Liu Hongrong, Yang Qibin

机构信息

Institute of Modern Physics, Xiangtan University, Xiangtan 411105, China.

出版信息

Int J Biomed Imaging. 2010;2010:195274. doi: 10.1155/2010/195274. Epub 2010 Jan 21.

Abstract

A method for three-dimensional (3D) reconstruction of macromolecule assembles, that is, octahedral symmetrical adapted functions (OSAFs) method, was introduced in this paper and a series of formulations for reconstruction by OSAF method were derived. To verify the feasibility and advantages of the method, two octahedral symmetrical macromolecules, that is, heat shock protein Degp(24) and the Red-cell L Ferritin, were utilized as examples to implement reconstruction by the OSAF method. The schedule for simulation was designed as follows: 2000 random orientated projections of single particles with predefined Euler angles and centers of origins were generated, then different levels of noises that is signal-to-noise ratio (S/N) = 0.1, 0.5, and 0.8 were added. The structures reconstructed by the OSAF method were in good agreement with the standard models and the relative errors of the structures reconstructed by the OSAF method to standard structures were very little even for high level noise. The facts mentioned above account for that the OSAF method is feasible and efficient approach to reconstruct structures of macromolecules and have ability to suppress the influence of noise.

摘要

本文介绍了一种用于大分子组装体三维(3D)重建的方法,即八面体对称适配函数(OSAFs)方法,并推导了一系列通过OSAF方法进行重建的公式。为验证该方法的可行性和优势,以两个八面体对称大分子,即热休克蛋白Degp(24)和红细胞L铁蛋白为例,采用OSAF方法进行重建。模拟流程设计如下:生成2000个具有预定义欧拉角和原点中心的单颗粒随机取向投影,然后添加不同水平的噪声,即信噪比(S/N)=0.1、0.5和0.8。通过OSAF方法重建的结构与标准模型吻合良好,即使对于高水平噪声,OSAF方法重建的结构与标准结构的相对误差也非常小。上述事实表明,OSAF方法是一种可行且高效的重建大分子结构的方法,并且有能力抑制噪声的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c63/2817395/7c39463f50e1/IJBI2010-195274.001.jpg

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