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Cryo-electron tomography for the structural study of mitochondrial translation

    Research output: Contribution to journalArticleAcademicpeer-review

    Abstract

    Cryo-electron tomography (cryo-ET) enables the three-dimensional (3D) structural characterization of macromolecular complexes in their physiological environment. Thus, cryo-ET is uniquely suited to study the structural basis of biomolecular processes that are extremely difficult or even impossible to reconstitute using purified components. Translation of mitochondrial genes, which occurs in the secluded interior of mitochondria, falls into this category. Here, we describe the principles of cryo-ET in the context of mitochondrial translation and outline recent developments and challenges of the method. The 3D image of a frozen-hydrated biological sample is computed from its 2D projections, which are acquired using a transmission electron microscope. In conjunction with automated detection of different copies of the molecule of interest and averaging of the corresponding subtomograms, cryo-ET enables macromolecular structure determination in the native environment (i.e. in situ) at sub-nanometer resolution. The preservation of the native environment furthermore allows the extraction of contextual information about the molecules, including the location of specific molecules with respect to membranes, their relative positioning and the spatial organization with respect to other types of macromolecules. Recent preparative developments extend the field of application of cryo-ET from isolated organelles to cultured eukaryotic cells and even tissue, making the traditional borders between molecular and cellular structural biology disappear.

    Original languageEnglish
    Pages (from-to)129-138
    Number of pages10
    JournalTissue and Cell
    Volume57
    DOIs
    Publication statusPublished - Apr 2019

    Funding

    This work was supported by funding from the Nederlandse Organisatie voor Wetenschappelijke Onderzoek (Vici 724.016.001) and the European Research Council under the European Union's Horizon2020 Programme (ERC Consolidator Grant Agreement 724425 - BENDER).

    Keywords

    • Assembly
    • Cryo-electron tomography
    • Cryo-EM
    • Image processing
    • In situ structural biology
    • Mitochondria
    • Mitochondrial translation
    • Organelle structure
    • Oxidative phosphorylation
    • Ribosome

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