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A collaborative framework for 3D alignment and classification of heterogeneous subvolumes in cryo-electron tomography

机译:冷冻电子断层扫描中的三维对准和异质亚波族分类的协作框架

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摘要

The limitation of using low electron doses in non-destructive cryo-electron tomography of biological specimens can be partially offset via averaging of aligned and structurally homogeneous subsets present in tomograms. This type of sub-volume averaging is especially challenging when multiple species are present. Here, we tackle the problem of conformational separation and alignment with a “collaborative” approach designed to reduce the effect of the “curse of dimensionality” encountered in standard pair-wise comparisons. Our new approach is based on using the nuclear norm as a collaborative similarity measure for alignment of sub-volumes, and by exploiting the presence of symmetry early in the processing. We provide a strict validation of this method by analyzing mixtures of intact simian immunodeficiency viruses SIV mac239 and SIV CP-MAC. Electron microscopic images of these two virus preparations are indistinguishable except for subtle differences in conformation of the envelope glycoproteins displayed on the surface of each virus particle. By using the nuclear norm-based, collaborative alignment method presented here, we demonstrate that the genetic identity of each virus particle present in the mixture can be assigned based solely on the structural information derived from single envelope glycoproteins displayed on the virus surface.
机译:在生物样品的非破坏性低温电子层析成像中使用低电子剂量的局限性可以通过平均断层图中存在的对齐和结构均匀的子集来部分抵消。当存在多个物种时,这种子体积平均类型尤其具有挑战性。在这里,我们使用“协作”方法解决构象分离和对齐问题,该方法旨在减少标准成对比较中遇到的“维数诅咒”的影响。我们的新方法是基于使用核规范作为协作相似性度量来对齐子体积,以及通过在处理的早期利用对称性的存在。通过分析完整的猿猴免疫缺陷病毒SIV mac239和SIV CP-MAC的混合物,我们对该方法进行了严格的验证。除显示在每个病毒颗粒表面的包膜糖蛋白构象有细微差异外,这两种病毒制剂的电子显微图像无法区分。通过使用此处介绍的基于核规范的协同比对方法,我们证明了混合物中存在的每种病毒颗粒的遗传同一性都可以仅基于源自病毒表面显示的单个包膜糖蛋白的结构信息进行分配。

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