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A microtubule RELION-based pipeline for cryo-EM image processing

Alexander D. Cook, Szymon W. Manka, Su Wang, Carolyn A. Moores, View ORCID ProfileJoseph Atherton
doi: https://doi.org/10.1101/673566
Alexander D. Cook
1Institute of Structural and Molecular Biology, Birkbeck, University of London, Malet Street, London, United Kingdom
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Szymon W. Manka
1Institute of Structural and Molecular Biology, Birkbeck, University of London, Malet Street, London, United Kingdom
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Su Wang
1Institute of Structural and Molecular Biology, Birkbeck, University of London, Malet Street, London, United Kingdom
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Carolyn A. Moores
1Institute of Structural and Molecular Biology, Birkbeck, University of London, Malet Street, London, United Kingdom
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Joseph Atherton
1Institute of Structural and Molecular Biology, Birkbeck, University of London, Malet Street, London, United Kingdom
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  • ORCID record for Joseph Atherton
  • For correspondence: j.atherton@mail.cryst.bbk.ac.uk
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Abstract

Microtubules are polar filaments built from αβ-tubulin heterodimers that exhibit a range of architectures in vitro and in vivo. Tubulin heterodimers are arranged helically in the microtubule wall but many physiologically relevant architectures exhibit a break in helical symmetry known as the seam. Noisy 2D cryo-electron microscopy projection images of pseudo-helical microtubules therefore depict distinct but highly similar views owing to the high structural similarity of α- and β-tubulin. The determination of the αβ-tubulin register and seam location during image processing is essential for alignment accuracy that enables determination of biologically relevant structures. Here we present a pipeline designed for image processing and high-resolution reconstruction of cryo-electron microscopy microtubule datasets, based in the popular and user-friendly RELION image-processing package, Microtubule RELION-based Pipeline (MiRP). The pipeline uses a combination of supervised classification and prior knowledge about geometric lattice constraints in microtubules to accurately determine microtubule architecture and seam location. The presented method is fast and semi-automated, producing near-atomic resolution reconstructions with test datasets that contain a range of microtubule architectures and binding proteins.

Abbreviations MiRP, Microtubule RELION-based Pipeline; cryo-EM, cryo-electron microscopy; MT, microtubule; CTF, contrast transfer function; PF, protofilament.

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The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. All rights reserved. No reuse allowed without permission.
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Posted June 17, 2019.
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A microtubule RELION-based pipeline for cryo-EM image processing
Alexander D. Cook, Szymon W. Manka, Su Wang, Carolyn A. Moores, Joseph Atherton
bioRxiv 673566; doi: https://doi.org/10.1101/673566
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A microtubule RELION-based pipeline for cryo-EM image processing
Alexander D. Cook, Szymon W. Manka, Su Wang, Carolyn A. Moores, Joseph Atherton
bioRxiv 673566; doi: https://doi.org/10.1101/673566

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