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Single-particle cryo-EM using alignment by classification (ABC): the structure of Lumbricus terrestris haemoglobin

Single-particle cryogenic electron microscopy (cryo-EM) can now yield near-atomic resolution structures of biological complexes. However, the reference-based alignment algorithms commonly used in cryo-EM suffer from reference bias, limiting their applicability (also known as the ‘Einstein from rando...

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Autores principales: Afanasyev, Pavel, Seer-Linnemayr, Charlotte, Ravelli, Raimond B. G., Matadeen, Rishi, De Carlo, Sacha, Alewijnse, Bart, Portugal, Rodrigo V., Pannu, Navraj S., Schatz, Michael, van Heel, Marin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5619859/
https://www.ncbi.nlm.nih.gov/pubmed/28989723
http://dx.doi.org/10.1107/S2052252517010922
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author Afanasyev, Pavel
Seer-Linnemayr, Charlotte
Ravelli, Raimond B. G.
Matadeen, Rishi
De Carlo, Sacha
Alewijnse, Bart
Portugal, Rodrigo V.
Pannu, Navraj S.
Schatz, Michael
van Heel, Marin
author_facet Afanasyev, Pavel
Seer-Linnemayr, Charlotte
Ravelli, Raimond B. G.
Matadeen, Rishi
De Carlo, Sacha
Alewijnse, Bart
Portugal, Rodrigo V.
Pannu, Navraj S.
Schatz, Michael
van Heel, Marin
author_sort Afanasyev, Pavel
collection PubMed
description Single-particle cryogenic electron microscopy (cryo-EM) can now yield near-atomic resolution structures of biological complexes. However, the reference-based alignment algorithms commonly used in cryo-EM suffer from reference bias, limiting their applicability (also known as the ‘Einstein from random noise’ problem). Low-dose cryo-EM therefore requires robust and objective approaches to reveal the structural information contained in the extremely noisy data, especially when dealing with small structures. A reference-free pipeline is presented for obtaining near-atomic resolution three-dimensional reconstructions from heterogeneous (‘four-dimensional’) cryo-EM data sets. The methodologies integrated in this pipeline include a posteriori camera correction, movie-based full-data-set contrast transfer function determination, movie-alignment algorithms, (Fourier-space) multivariate statistical data compression and unsupervised classification, ‘random-startup’ three-dimensional reconstructions, four-dimensional structural refinements and Fourier shell correlation criteria for evaluating anisotropic resolution. The procedures exclusively use information emerging from the data set itself, without external ‘starting models’. Euler-angle assignments are performed by angular reconstitution rather than by the inherently slower projection-matching approaches. The comprehensive ‘ABC-4D’ pipeline is based on the two-dimensional reference-free ‘alignment by classification’ (ABC) approach, where similar images in similar orientations are grouped by unsupervised classification. Some fundamental differences between X-ray crystallography versus single-particle cryo-EM data collection and data processing are discussed. The structure of the giant haemoglobin from Lumbricus terrestris at a global resolution of ∼3.8 Å is presented as an example of the use of the ABC-4D procedure.
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spelling pubmed-56198592017-10-06 Single-particle cryo-EM using alignment by classification (ABC): the structure of Lumbricus terrestris haemoglobin Afanasyev, Pavel Seer-Linnemayr, Charlotte Ravelli, Raimond B. G. Matadeen, Rishi De Carlo, Sacha Alewijnse, Bart Portugal, Rodrigo V. Pannu, Navraj S. Schatz, Michael van Heel, Marin IUCrJ Research Papers Single-particle cryogenic electron microscopy (cryo-EM) can now yield near-atomic resolution structures of biological complexes. However, the reference-based alignment algorithms commonly used in cryo-EM suffer from reference bias, limiting their applicability (also known as the ‘Einstein from random noise’ problem). Low-dose cryo-EM therefore requires robust and objective approaches to reveal the structural information contained in the extremely noisy data, especially when dealing with small structures. A reference-free pipeline is presented for obtaining near-atomic resolution three-dimensional reconstructions from heterogeneous (‘four-dimensional’) cryo-EM data sets. The methodologies integrated in this pipeline include a posteriori camera correction, movie-based full-data-set contrast transfer function determination, movie-alignment algorithms, (Fourier-space) multivariate statistical data compression and unsupervised classification, ‘random-startup’ three-dimensional reconstructions, four-dimensional structural refinements and Fourier shell correlation criteria for evaluating anisotropic resolution. The procedures exclusively use information emerging from the data set itself, without external ‘starting models’. Euler-angle assignments are performed by angular reconstitution rather than by the inherently slower projection-matching approaches. The comprehensive ‘ABC-4D’ pipeline is based on the two-dimensional reference-free ‘alignment by classification’ (ABC) approach, where similar images in similar orientations are grouped by unsupervised classification. Some fundamental differences between X-ray crystallography versus single-particle cryo-EM data collection and data processing are discussed. The structure of the giant haemoglobin from Lumbricus terrestris at a global resolution of ∼3.8 Å is presented as an example of the use of the ABC-4D procedure. International Union of Crystallography 2017-08-31 /pmc/articles/PMC5619859/ /pubmed/28989723 http://dx.doi.org/10.1107/S2052252517010922 Text en © Pavel Afanasyev et al. 2017 http://creativecommons.org/licenses/by/2.0/uk/ This is an open-access article distributed under the terms of the Creative Commons Attribution (CC-BY) Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.http://creativecommons.org/licenses/by/2.0/uk/
spellingShingle Research Papers
Afanasyev, Pavel
Seer-Linnemayr, Charlotte
Ravelli, Raimond B. G.
Matadeen, Rishi
De Carlo, Sacha
Alewijnse, Bart
Portugal, Rodrigo V.
Pannu, Navraj S.
Schatz, Michael
van Heel, Marin
Single-particle cryo-EM using alignment by classification (ABC): the structure of Lumbricus terrestris haemoglobin
title Single-particle cryo-EM using alignment by classification (ABC): the structure of Lumbricus terrestris haemoglobin
title_full Single-particle cryo-EM using alignment by classification (ABC): the structure of Lumbricus terrestris haemoglobin
title_fullStr Single-particle cryo-EM using alignment by classification (ABC): the structure of Lumbricus terrestris haemoglobin
title_full_unstemmed Single-particle cryo-EM using alignment by classification (ABC): the structure of Lumbricus terrestris haemoglobin
title_short Single-particle cryo-EM using alignment by classification (ABC): the structure of Lumbricus terrestris haemoglobin
title_sort single-particle cryo-em using alignment by classification (abc): the structure of lumbricus terrestris haemoglobin
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5619859/
https://www.ncbi.nlm.nih.gov/pubmed/28989723
http://dx.doi.org/10.1107/S2052252517010922
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