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通过直接电子探测器观察烟草花叶病毒。

Seeing tobacco mosaic virus through direct electron detectors.

作者信息

Fromm Simon A, Bharat Tanmay A M, Jakobi Arjen J, Hagen Wim J H, Sachse Carsten

机构信息

EMBL - European Molecular Biology Laboratory, Structural and Computational Biology Unit, Meyerhofstr. 1, 69117 Heidelberg, Germany.

MRC Laboratory of Molecular Biology, Structural Studies Division, Francis Crick Avenue, Cambridge CB2 0QH, UK.

出版信息

J Struct Biol. 2015 Feb;189(2):87-97. doi: 10.1016/j.jsb.2014.12.002. Epub 2014 Dec 17.

Abstract

With the introduction of direct electron detectors (DED) to the field of electron cryo-microscopy, a wave of atomic-resolution structures has become available. As the new detectors still require comparative characterization, we have used tobacco mosaic virus (TMV) as a test specimen to study the quality of 3D image reconstructions from data recorded on the two direct electron detector cameras, K2 Summit and Falcon II. Using DED movie frames, we explored related image-processing aspects and compared the performance of micrograph-based and segment-based motion correction approaches. In addition, we investigated the effect of dose deposition on the atomic-resolution structure of TMV and show that radiation damage affects negative carboxyl chains first in a side-chain specific manner. Finally, using 450,000 asymmetric units and limiting the effects of radiation damage, we determined a high-resolution cryo-EM map at 3.35Å resolution. Here, we provide a comparative case study of highly ordered TMV recorded on different direct electron detectors to establish recording and processing conditions that enable structure determination up to 3.2Å in resolution using cryo-EM.

摘要

随着直接电子探测器(DED)引入电子冷冻显微镜领域,一波原子分辨率结构已可获得。由于新探测器仍需要进行比较表征,我们使用烟草花叶病毒(TMV)作为测试样本,以研究从在两款直接电子探测器相机K2 Summit和Falcon II上记录的数据进行三维图像重建的质量。使用DED电影帧,我们探索了相关的图像处理方面,并比较了基于显微照片和基于片段的运动校正方法的性能。此外,我们研究了剂量沉积对TMV原子分辨率结构的影响,并表明辐射损伤首先以侧链特异性方式影响负羧基链。最后,使用450,000个不对称单元并限制辐射损伤的影响,我们确定了分辨率为3.35Å的高分辨率冷冻电镜图谱。在这里,我们提供了一个在不同直接电子探测器上记录的高度有序TMV的比较案例研究,以建立记录和处理条件,从而能够使用冷冻电镜确定分辨率高达3.2Å的结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa54/4416312/153314dbf6e4/fx1.jpg

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