Problems in fitting high resolution structures into electron microscopic reconstructions.

Hfsp Journal Pub Date : 2008-12-01 Epub Date: 2008-09-29 DOI:10.2976/1.2992221
Edward H Egelman
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引用次数: 11

Abstract

Great advances have been made in electron microscopy (EM) over the past decade, with the result that a number of protein complexes have been solved at near-atomic resolution using EM imaging. However, only a limited number of such complexes are expected to have the high degree of internal order needed to achieve this type of resolution. Many other complexes and polymers will be visualized and reconstructed by EM at an intermediate level of resolution, where the polypeptide chain cannot be directly traced. Crystal and nuclear magnetic resonance structures for components or subunits of these higher-order assemblies are frequently available. One of the greatest strengths of EM continues to be the ability to dock high-resolution structures of components into low or intermediate resolution reconstructions of assemblies to build pseudoatomic models for quaternary structure. This review discusses the strengths and limitations of this approach, with particular emphasis on protein polymers. I discuss how limitations in resolution can lead to ambiguities in building models, and these cannot be always be resolved with available data. The use of homology models for quaternary structure are particularly problematic, given accumulating evidence for the divergence of quaternary structures at the same time that tertiary structure can be conserved.

高分辨率结构在电镜重建中的拟合问题。
在过去的十年里,电子显微镜(EM)取得了巨大的进步,结果是许多蛋白质复合物已经用EM成像在近原子分辨率下被解决。然而,只有有限数量的这样的复合体预计具有实现这种类型的分辨率所需的高度内部秩序。许多其他配合物和聚合物将在中间分辨率水平上通过EM可视化和重建,其中多肽链不能直接追踪。晶体和核磁共振结构的组件或这些高阶组件的亚单位是经常可用的。EM最大的优势之一仍然是能够将组件的高分辨率结构对接到低分辨率或中等分辨率的组件重建中,以构建四元结构的伪原子模型。这篇综述讨论了这种方法的优点和局限性,特别强调了蛋白质聚合物。我讨论了分辨率的限制如何导致构建模型的模糊性,而这些不可能总是用可用的数据来解决。由于越来越多的证据表明,在四级结构存在分化的同时,三级结构是可以守恒的,因此在四级结构中使用同源模型尤其成问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Hfsp Journal
Hfsp Journal 综合性期刊-综合性期刊
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