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广泛的角采样使电子断层图像中的大分子的敏感定位成为可能。

Extensive Angular Sampling Enables the Sensitive Localization of Macromolecules in Electron Tomograms.

机构信息

Structural Biochemistry, Bijvoet Centre for Biomolecular Research, Utrecht University, 3584 CG Utrecht, The Netherlands.

Department of Information and Computing Sciences, Utrecht University, 3584 CC Utrecht, The Netherlands.

出版信息

Int J Mol Sci. 2023 Aug 29;24(17):13375. doi: 10.3390/ijms241713375.

Abstract

Cryo-electron tomography provides 3D images of macromolecules in their cellular context. To detect macromolecules in tomograms, template matching (TM) is often used, which uses 3D models that are often reliable for substantial parts of the macromolecules. However, the extent of rotational searches in particle detection has not been investigated due to computational limitations. Here, we provide a GPU implementation of TM as part of the PyTOM software package, which drastically speeds up the orientational search and allows for sampling beyond the Crowther criterion within a feasible timeframe. We quantify the improvements in sensitivity and false-discovery rate for the examples of ribosome identification and detection. Sampling at the Crowther criterion, which was effectively impossible with CPU implementations due to the extensive computation times, allows for automated extraction with high sensitivity. Consequently, we also show that an extensive angular sample renders 3D TM sensitive to the local alignment of tilt series and damage induced by focused ion beam milling. With this new release of PyTOM, we focused on integration with other software packages that support more refined subtomogram-averaging workflows. The automated classification of ribosomes by TM with appropriate angular sampling on locally corrected tomograms has a sufficiently low false-discovery rate, allowing for it to be directly used for high-resolution averaging and adequate sensitivity to reveal polysome organization.

摘要

冷冻电子断层扫描提供了细胞环境中大分子的 3D 图像。为了在断层扫描中检测大分子,通常使用模板匹配(TM),它使用的 3D 模型在大分子的大部分区域通常是可靠的。然而,由于计算限制,尚未研究粒子检测中的旋转搜索范围。在这里,我们提供了 PyTOM 软件包的一部分的 TM 的 GPU 实现,这大大加快了定向搜索速度,并允许在可行的时间内超出 Crowther 标准进行采样。我们通过核糖体鉴定和检测的例子来量化灵敏度和假阳性率的提高。在 Crowther 标准下进行采样,由于计算时间过长,CPU 实现几乎不可能实现,这使得能够以高灵敏度进行自动提取。因此,我们还表明,广泛的角度采样使得 3D-TM 对倾斜系列的局部对齐和聚焦离子束铣削引起的损伤敏感。通过这个新版本的 PyTOM,我们专注于与支持更精细子断层平均工作流程的其他软件包的集成。通过在局部校正的断层扫描上进行适当的角度采样,对核糖体进行 TM 自动分类的假阳性率足够低,允许直接用于高分辨率平均,并具有足够的灵敏度来揭示多核糖体组织。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c9f/10487639/6ebdc631e464/ijms-24-13375-g001.jpg

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