Image processing for electron microscopy single-particle analysis using XMIPP

被引:0
|
作者
Sjors H W Scheres
Rafael Núñez-Ramírez
Carlos O S Sorzano
José María Carazo
Roberto Marabini
机构
[1] Centro Nacional de Biotecnología CSIC,Department Ingeniería de Sistemas Electrónicos y de Telecomunicación
[2] Unidad de Biocomputación,undefined
[3] University San Pablo-CEU,undefined
[4] Escuela Politécnica Superior,undefined
[5] Dept. Informática,undefined
[6] University Autónoma de Madrid,undefined
来源
Nature Protocols | 2008年 / 3卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
We describe a collection of standardized image processing protocols for electron microscopy single-particle analysis using the XMIPP software package. These protocols allow performing the entire processing workflow starting from digitized micrographs up to the final refinement and evaluation of 3D models. A particular emphasis has been placed on the treatment of structurally heterogeneous data through maximum-likelihood refinements and self-organizing maps as well as the generation of initial 3D models for such data sets through random conical tilt reconstruction methods. All protocols presented have been implemented as stand-alone, executable python scripts, for which a dedicated graphical user interface has been developed. Thereby, they may provide novice users with a convenient tool to quickly obtain useful results with minimum efforts in learning about the details of this comprehensive package. Examples of applications are presented for a negative stain random conical tilt data set on the hexameric helicase G40P and for a structurally heterogeneous data set on 70S Escherichia coli ribosomes embedded in vitrified ice.
引用
收藏
页码:977 / 990
页数:13
相关论文
共 50 条
  • [31] Principles of cryo-EM single-particle image processing
    Sigworth, Fred J.
    MICROSCOPY, 2016, 65 (01) : 57 - 67
  • [32] cisTEM, user friendly software for single-particle image processing
    Grant, Timothy
    Rohou, Alexis
    Grigorieff, Nikolaus
    ELIFE, 2018, 7
  • [33] DNA Nanotags for Multiplexed Single-Particle Electron Microscopy and In Situ Electron Cryotomography
    Chen, Yuanfang
    Huang, Yiqian
    Yang, Yuhe R.
    JACS AU, 2024, 5 (01): : 17 - 27
  • [34] A modified Cross Correlation Method for Reference-Free Image Alignment in Single-Particle Electron Microscopy
    Park, Wooram
    Chirikjian, Gregory S.
    BIOPHYSICAL JOURNAL, 2011, 100 (03) : 322 - 323
  • [35] Single-particle electron cryo-microscopy: towards atomic resolution
    van Heel, M
    Gowen, B
    Matadeen, R
    Orlova, EV
    Finn, R
    Pape, T
    Cohen, D
    Stark, H
    Schmidt, R
    Schatz, M
    Patwardhan, A
    QUARTERLY REVIEWS OF BIOPHYSICS, 2000, 33 (04) : 307 - 369
  • [36] Flexible Fabs in the Refinement of Complexes by Single-Particle Transmission Electron Microscopy
    Hoffman, Ryan M. B.
    Ward, Andrew B.
    BIOPHYSICAL JOURNAL, 2014, 106 (02) : 599A - 599A
  • [37] Parallel, distributed and GPU computing technologies in single-particle electron microscopy
    Schmeisser, Martin
    Heisen, Burkhard C.
    Luettich, Mario
    Busche, Boris
    Hauer, Florian
    Koske, Tobias
    Knauber, Karl-Heinz
    Stark, Holger
    ACTA CRYSTALLOGRAPHICA SECTION D-STRUCTURAL BIOLOGY, 2009, 65 : 659 - 671
  • [38] The Advent of Near-Atomic Resolution in Single-Particle Electron Microscopy
    Cheng, Yifan
    Walz, Thomas
    ANNUAL REVIEW OF BIOCHEMISTRY, 2009, 78 : 723 - 742
  • [39] Amyloid fibril length distribution quantified by atomic force microscopy single-particle image analysis
    Xue, Wei-Feng
    Homans, Steve W.
    Radford, Sheena E.
    PROTEIN ENGINEERING DESIGN & SELECTION, 2009, 22 (08): : 489 - 496
  • [40] Deblurring of class-averaged images in single-particle electron microscopy
    Park, Wooram
    Madden, Dean R.
    Rockmore, Daniel N.
    Chirikjian, Gregory S.
    INVERSE PROBLEMS, 2010, 26 (03)