Algorithmic robustness to preferred orientations in single particle analysis by CryoEM

[Display omitted] The presence of preferred orientations in single particle analysis (SPA) by cryo-Electron Microscopy (cryoEM) is currently one of the hurdles preventing many structural analyses from yielding high-resolution structures. Although the existence of preferred orientations is mostly rel...

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Veröffentlicht in:Journal of structural biology 2021-03, Vol.213 (1), p.107695-107695, Article 107695
Hauptverfasser: Sorzano, C.O.S., Semchonok, D., Lin, S.-C., Lo, Y.-C., Vilas, J.L., Jiménez-Moreno, A., Gragera, M., Vacca, S., Maluenda, D., Martínez, M., Ramírez-Aportela, E., Melero, R., Cuervo, A., Conesa, J.J., Conesa, P., Losana, P., Caño, L. del, de la Morena, J. Jiménez, Fonseca, Y.C., Sánchez-García, R., Strelak, D., Fernández-Giménez, E., de Isidro, F., Herreros, D., Kastritis, P.L., Marabini, R., Bruce, B.D., Carazo, J.M.
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Sprache:eng
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Zusammenfassung:[Display omitted] The presence of preferred orientations in single particle analysis (SPA) by cryo-Electron Microscopy (cryoEM) is currently one of the hurdles preventing many structural analyses from yielding high-resolution structures. Although the existence of preferred orientations is mostly related to the grid preparation, in this technical note, we show that some image processing algorithms used for angular assignment and three-dimensional (3D) reconstruction are more robust than others to these detrimental conditions. We exemplify this argument with three different data sets in which the presence of preferred orientations hindered achieving a 3D reconstruction without artifacts or, even worse, a 3D reconstruction could never be achieved.
ISSN:1047-8477
1095-8657
DOI:10.1016/j.jsb.2020.107695