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首页> 外文期刊>Journal of Structural Biology >Contrast transfer function correction applied to cryo-electron tomography and sub-tomogram averaging.
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Contrast transfer function correction applied to cryo-electron tomography and sub-tomogram averaging.

机译:对比度传递函数校正应用于冷电子断层扫描和亚断层图像平均。

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摘要

Cryo-electron tomography together with averaging of sub-tomograms containing identical particles can reveal the structure of proteins or protein complexes in their native environment. The resolution of this technique is limited by the contrast transfer function (CTF) of the microscope. The CTF is not routinely corrected in cryo-electron tomography because of difficulties including CTF detection, due to the low signal to noise ratio, and CTF correction, since images are characterised by a spatially variant CTF. Here we simulate the effects of the CTF on the resolution of the final reconstruction, before and after CTF correction, and consider the effect of errors and approximations in defocus determination. We show that errors in defocus determination are well tolerated when correcting a series of tomograms collected at a range of defocus values. We apply methods for determining the CTF parameters in low signal to noise images of tilted specimens, for monitoring defocus changes using observed magnification changes, and for correcting the CTF prior to reconstruction. Using bacteriophage PRD1 as a test sample, we demonstrate that this approach gives an improvement in the structure obtained by sub-tomogram averaging from cryo-electron tomograms.
机译:低温电子断层扫描以及包含相同颗粒的子断层图的平均可以揭示其天然环境中蛋白质或蛋白质复合物的结构。该技术的分辨率受到显微镜的对比度传递函数(CTF)的限制。由于低信噪比,由于包括CTF检测在内的诸多困难以及CTF校正,因此在低温电子断层扫描中无法常规校正CTF,因为图像具有空间变异的CTF。在这里,我们模拟了CTF对CTF校正前后的最终重建分辨率的影响,并考虑了散焦确定中误差和近似值的影响。我们显示,当校正一系列在散焦值范围内收集的断层图时,散焦确定中的错误可以很好地容忍。我们将确定低信号中CTF参数的方法应用于倾斜标本的噪声图像,使用观察到的放大倍率监控散焦变化以及在重建之前校正CTF的方法。使用噬菌体PRD1作为测试样品,我们证明了这种方法改善了通过从低温电子体层摄影术中得到的平均子层析图所获得的结构。

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