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PF2fit: Polar Fast Fourier Matched Alignment of Atomistic Structures with 3D Electron Microscopy Maps

机译:PF2fit:原子结构与3D电子显微镜图的极快速傅里叶匹配对准

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摘要

There continue to be increasing occurrences of both atomistic structure models in the PDB (possibly reconstructed from X-ray diffraction or NMR data), and 3D reconstructed cryo-electron microscopy (3D EM) maps (albeit at coarser resolution) of the same or homologous molecule or molecular assembly, deposited in the EMDB. To obtain the best possible structural model of the molecule at the best achievable resolution, and without any missing gaps, one typically aligns (match and fits) the atomistic structure model with the 3D EM map. We discuss a new algorithm and generalized framework, named PF2 fit (Polar Fast Fourier Fitting) for the best possible structural alignment of atomistic structures with 3D EM. While PF2 fit enables only a rigid, six dimensional (6D) alignment method, it augments prior work on 6D X-ray structure and 3D EM alignment in multiple ways: Scoring. PF2 fit includes a new scoring scheme that, in addition to rewarding overlaps between the volumes occupied by the atomistic structure and 3D EM map, rewards overlaps between the volumes complementary to them. We quantitatively demonstrate how this new complementary scoring scheme improves upon existing approaches. PF2 fit also includes two scoring functions, the non-uniform exterior penalty and the skeleton-secondary structure score, and implements the scattering potential score as an alternative to traditional Gaussian blurring. Search. PF2 fit utilizes a fast polar Fourier search scheme, whose main advantage is the ability to search over uniformly and adaptively sampled subsets of the space of rigid-body motions. PF2 fit also implements a new reranking search and scoring methodology that considerably improves alignment metrics in results obtained from the initial search.
机译:PDB中的两种原子结构模型(可能是根据X射线衍射或NMR数据重建的)和相同或相似的3D重建的冷冻电子显微镜(3D EM)映射(尽管分辨率更高)的发生率不断增加。分子或分子组装体,存放在EMDB中。为了以最佳可获得的分辨率获得最佳的分子结构模型,并且没有任何缺失的缺口,通常将原子结构模型与3D EM映射对齐(匹配并拟合)。我们讨论了一种新的算法和通用框架,称为PF 2 fit(极快速傅立叶拟合),可实现3D EM原子结构的最佳结构对齐。尽管PF 2 拟合仅启用一种刚性的六维(6D)对准方法,但它以多种方式增加了有关6D X射线结构和3D EM对准的现有工作:计分。 PF 2 拟合包括一种新的评分方案,该方案除了奖励原子结构和3D EM映射所占据的体积之间的重叠之外,还奖励与之互补的体积之间的重叠。我们定量地证明了这种新的互补计分方案如何在现有方法的基础上进行改进。 PF 2 拟合还包括两个计分函数:不均匀的外部罚分和骨架-二级结构得分,并实现了散射势能得分,以替代传统的高斯模糊。搜索。 PF 2 拟合利用快速极地傅立叶搜索方案,其主要优点是能够搜索刚体运动空间的统一且自适应采样的子集。 PF 2 fit还实现了一种新的重新排序搜索和评分方法,该方法大大改善了从初始搜索获得的结果中的对齐指标。

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