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基于多分辨率轮廓的大分子结构拟合

Multi-resolution contour-based fitting of macromolecular structures.

作者信息

Chacón Pablo, Wriggers Willy

机构信息

Department of Molecular Biology, The Scripps Research Institute, 10550 N. Torrey Pines Road, La Jolla, CA 92037, USA.

出版信息

J Mol Biol. 2002 Mar 29;317(3):375-84. doi: 10.1006/jmbi.2002.5438.

Abstract

A novel contour-based matching criterion is presented for the quantitative docking of high-resolution structures of components into low-resolution maps of macromolecular complexes. The proposed Laplacian filter is combined with a six-dimensional search using fast Fourier transforms to rapidly scan the rigid-body degrees of freedom of a probe molecule relative to a fixed target density map. A comparison of the docking performance with the standard cross-correlation criterion demonstrates that contour matching with the Laplacian filter significantly extends the viable resolution range of correlation-based fitting to resolutions as low as 30 A. The gain in docking precision at medium to low resolution (15-30 A) is critical for image reconstructions from electron microscopy (EM). The new algorithm enables for the first time the reliable docking of smaller molecular components into EM densities of large biomolecular assemblies at such low resolutions. As an example of the practical effectiveness of contour-based fitting, a new pseudo-atomic model of a microtubule was constructed from a 20 A resolution EM map and from atomic structures of alpha and beta tubulin subunits.

摘要

提出了一种基于轮廓的新型匹配标准,用于将组分的高分辨率结构定量对接至大分子复合物的低分辨率图谱中。所提出的拉普拉斯滤波器与使用快速傅里叶变换的六维搜索相结合,以快速扫描探针分子相对于固定目标密度图的刚体自由度。将对接性能与标准互相关标准进行比较表明,使用拉普拉斯滤波器的轮廓匹配显著扩展了基于相关性拟合的可行分辨率范围,低至30埃的分辨率也适用。中低分辨率(15 - 30埃)下对接精度的提高对于电子显微镜(EM)图像重建至关重要。新算法首次实现了在如此低分辨率下将较小分子组分可靠地对接至大型生物分子组装体的EM密度图中。作为基于轮廓拟合实际有效性的一个例子,从20埃分辨率的EM图以及α和β微管蛋白亚基的原子结构构建了一种新的微管假原子模型。

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