首页> 外文期刊>Journal of Molecular Biology >Optimal Determination of Particle Orientation, Absolute Hand, and Contrast Loss in Single-particle Electron Cryomicroscopy.
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Optimal Determination of Particle Orientation, Absolute Hand, and Contrast Loss in Single-particle Electron Cryomicroscopy.

机译:单晶电子显微检查中颗粒取向,绝对手感和对比度损失的最佳测定。

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摘要

A computational procedure is described for assigning the absolute hand of the structure of a protein or assembly determined by single-particle electron microscopy. The procedure requires a pair of micrographs of the same particle field recorded at two tilt angles of a single tilt-axis specimen holder together with the three-dimensional map whose hand is being determined. For orientations determined from particles on one micrograph using the map, the agreement (average phase residual) between particle images on the second micrograph and map projections is determined for all possible choices of tilt angle and axis. Whether the agreement is better at the known tilt angle and axis of the microscope or its inverse indicates whether the map is of correct or incorrect hand. An increased discrimination of correct from incorrect hand (free hand difference), as well as accurate identification of the known values for the tilt angle and axis, can be used as targets for rapidly optimizing the search or refinement procedures used to determine particle orientations. Optimized refinement reduces the tendency for the model to match noise in a single image, thus improving the accuracy of the orientation determination and therefore the quality of the resulting map. The hand determination and refinement optimization procedure is applied to image pairs of the dihydrolipoyl acetyltransferase (E2) catalytic core of the pyruvate dehydrogenase complex from Bacillus stearothermophilus taken by low-dose electron cryomicroscopy. Structure factor amplitudes of a three-dimensional map of the E2 catalytic core obtained by averaging untilted images of 3667 icosahedral particles are compared to a scattering reference using a Guinier plot. A noise-dependent structure factor weight is derived and used in conjunction with a temperature factor (B=-1000A(2)) to restore high-resolution contrast without amplifying noise and to visualize molecular features to 8.7A resolution, according to a new objective criterion for resolution assessment proposed here.
机译:描述了一种计算程序,用于分配由单粒子电子显微镜确定的蛋白质或装配体结构的绝对手。该过程需要以单个倾斜轴样本支架的两个倾斜角度记录的相同粒子场的一对显微照片,以及要确定其手的三维图。对于使用地图从一张显微照片上的粒子确定的方向,对于所有可能的倾斜角和倾斜轴选择,都要确定第二张显微照片上的粒子图像与地图投影之间的一致性(平均相差)。在已知的显微镜倾斜角和轴方向或其相反位置上,一致性是否更好,这表明地图是正确的还是错误的手。正确与不正确手的区别(徒手差异)以及对倾斜角度和轴的已知值的准确识别可以用作快速优化用于确定粒子方向的搜索或优化过程的目标。优化的优化减少了模型在单个图像中匹配噪声的趋势,从而提高了方向确定的准确性,从而提高了结果图的质量。手动确定和优化优化程序适用于低剂量电子低温显微术拍摄的嗜热脂肪芽孢杆菌丙酮酸脱氢酶复合物的二氢脂酰乙酰基转移酶(E2)催化核心的图像对。通过使用Guinier图将通过平均3667个二十面体颗粒的倾斜图像获得的E2催化核的三维图的结构因子振幅与散射参考值进行比较。根据一个新的目标,得出了与噪声有关的结构因子权重,并将其与温度因子(B = -1000A(2))结合使用,可在不放大噪声的情况下恢复高分辨率对比度,并将分子特征可视化为8.7A分辨率。这里提出的分辨率评估标准。

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