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nextPYP: a comprehensive and scalable platform for characterizing protein variability in situ using single-particle cryo-electron tomography.

Publication ,  Journal Article
Liu, H-F; Zhou, Y; Huang, Q; Piland, J; Jin, W; Mandel, J; Du, X; Martin, J; Bartesaghi, A
Published in: Nature methods
December 2023

Single-particle cryo-electron tomography is an emerging technique capable of determining the structure of proteins imaged within the native context of cells at molecular resolution. While high-throughput techniques for sample preparation and tilt-series acquisition are beginning to provide sufficient data to allow structural studies of proteins at physiological concentrations, the complex data analysis pipeline and the demanding storage and computational requirements pose major barriers for the development and broader adoption of this technology. Here, we present a scalable, end-to-end framework for single-particle cryo-electron tomography data analysis from on-the-fly pre-processing of tilt series to high-resolution refinement and classification, which allows efficient analysis and visualization of datasets with hundreds of tilt series and hundreds of thousands of particles. We validate our approach using in vitro and cellular datasets, demonstrating its effectiveness at achieving high-resolution and revealing conformational heterogeneity in situ. The framework is made available through an intuitive and easy-to-use computer application, nextPYP ( http://nextpyp.app ).

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Published In

Nature methods

DOI

EISSN

1548-7105

ISSN

1548-7091

Publication Date

December 2023

Volume

20

Issue

12

Start / End Page

1909 / 1919

Related Subject Headings

  • Software
  • Proteins
  • Image Processing, Computer-Assisted
  • Electron Microscope Tomography
  • Developmental Biology
  • Cryoelectron Microscopy
  • 31 Biological sciences
  • 11 Medical and Health Sciences
  • 10 Technology
  • 06 Biological Sciences
 

Citation

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Liu, H.-F., Zhou, Y., Huang, Q., Piland, J., Jin, W., Mandel, J., … Bartesaghi, A. (2023). nextPYP: a comprehensive and scalable platform for characterizing protein variability in situ using single-particle cryo-electron tomography. Nature Methods, 20(12), 1909–1919. https://doi.org/10.1038/s41592-023-02045-0
Liu, Hsuan-Fu, Ye Zhou, Qinwen Huang, Jonathan Piland, Weisheng Jin, Justin Mandel, Xiaochen Du, Jeffrey Martin, and Alberto Bartesaghi. “nextPYP: a comprehensive and scalable platform for characterizing protein variability in situ using single-particle cryo-electron tomography.Nature Methods 20, no. 12 (December 2023): 1909–19. https://doi.org/10.1038/s41592-023-02045-0.
Liu H-F, Zhou Y, Huang Q, Piland J, Jin W, Mandel J, et al. nextPYP: a comprehensive and scalable platform for characterizing protein variability in situ using single-particle cryo-electron tomography. Nature methods. 2023 Dec;20(12):1909–19.
Liu, Hsuan-Fu, et al. “nextPYP: a comprehensive and scalable platform for characterizing protein variability in situ using single-particle cryo-electron tomography.Nature Methods, vol. 20, no. 12, Dec. 2023, pp. 1909–19. Epmc, doi:10.1038/s41592-023-02045-0.
Liu H-F, Zhou Y, Huang Q, Piland J, Jin W, Mandel J, Du X, Martin J, Bartesaghi A. nextPYP: a comprehensive and scalable platform for characterizing protein variability in situ using single-particle cryo-electron tomography. Nature methods. 2023 Dec;20(12):1909–1919.

Published In

Nature methods

DOI

EISSN

1548-7105

ISSN

1548-7091

Publication Date

December 2023

Volume

20

Issue

12

Start / End Page

1909 / 1919

Related Subject Headings

  • Software
  • Proteins
  • Image Processing, Computer-Assisted
  • Electron Microscope Tomography
  • Developmental Biology
  • Cryoelectron Microscopy
  • 31 Biological sciences
  • 11 Medical and Health Sciences
  • 10 Technology
  • 06 Biological Sciences