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通过传递函数校正的冷冻电镜断层成像技术解析原位的膜蛋白结构。

Unraveling the structure of membrane proteins in situ by transfer function corrected cryo-electron tomography.

机构信息

Max-Planck-Institut für Biochemie, Martinsried, Germany.

出版信息

J Struct Biol. 2012 Dec;180(3):488-96. doi: 10.1016/j.jsb.2012.09.008. Epub 2012 Sep 18.

Abstract

Cryo-electron tomography in combination with subtomogram averaging allows to investigate the structure of protein assemblies in their natural environment in a close to live state. To make full use of the structural information contained in tomograms it is necessary to analyze the contrast transfer function (CTF) of projections and to restore the phases of higher spatial frequencies. CTF correction is however hampered by the difficulty of determining the actual defocus values from tilt series data, which is due to the low signal-to-noise ratio of electron micrographs. In this study, an extended acquisition scheme is introduced that enables an independent CTF determination. Two high-dose images are recorded along the tilt axis on both sides of each projection, which allow an accurate determination of the defocus values of these images. These values are used to calculate the CTF for each image of the tilt series. We applied this scheme to the mycobacterial outer membrane protein MspA reconstituted in lipid vesicles and tested several variants of CTF estimation in combination with subtomogram averaging and correction of the modulation transfer function (MTF). The 3D electron density map of MspA was compared with a structure previously determined by X-ray crystallography. We were able to demonstrate that structural information up to a resolution of 16.8Å can be recovered using our CTF correction approach, whereas the uncorrected 3D map had a resolution of only 26.2Å.

摘要

冷冻电镜断层扫描与子断层平均相结合,可以在接近活细胞状态下研究蛋白质组装体在其自然环境中的结构。为了充分利用断层图像中包含的结构信息,有必要分析投影的对比度传递函数(CTF)并恢复更高空间频率的相位。然而,CTF 校正受到从倾斜系列数据确定实际离焦值的困难的阻碍,这是由于电子显微镜图像的信噪比低所致。在这项研究中,引入了一种扩展的采集方案,该方案允许进行独立的 CTF 确定。在每个投影的倾斜轴两侧记录两个高剂量图像,这允许准确确定这些图像的离焦值。这些值用于计算倾斜系列中每个图像的 CTF。我们将该方案应用于脂质囊泡中重组的分枝杆菌外膜蛋白 MspA,并结合子断层平均和调制传递函数(MTF)校正测试了几种 CTF 估计的变体。MspA 的 3D 电子密度图与先前通过 X 射线晶体学确定的结构进行了比较。我们能够证明,使用我们的 CTF 校正方法可以恢复高达 16.8Å 的分辨率的结构信息,而未校正的 3D 图谱的分辨率仅为 26.2Å。

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