| Literature DB >> 27119636 |
Carlos Oscar Sanchez Sorzano1, Ana Lucia Alvarez-Cabrera1, Mohsen Kazemi1, Jose María Carazo1, Slavica Jonić2.
Abstract
Single-particle electron microscopy (EM) has been shown to be very powerful for studying structures and associated conformational changes of macromolecular complexes. In the context of analyzing conformational changes of complexes, distinct EM density maps obtained by image analysis and three-dimensional (3D) reconstruction are usually analyzed in 3D for interpretation of structural differences. However, graphic visualization of these differences based on a quantitative analysis of elastic transformations (deformations) among density maps has not been done yet due to a lack of appropriate methods. Here, we present an approach that allows such visualization. This approach is based on statistical analysis of distances among elastically aligned pairs of EM maps (one map is deformed to fit the other map), and results in visualizing EM maps as points in a lower-dimensional distance space. The distances among points in the new space can be analyzed in terms of clusters or trajectories of points related to potential conformational changes. The results of the method are shown with synthetic and experimental EM maps at different resolutions.Entities:
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Year: 2016 PMID: 27119636 PMCID: PMC4850348 DOI: 10.1016/j.bpj.2016.03.019
Source DB: PubMed Journal: Biophys J ISSN: 0006-3495 Impact factor: 4.033