A cryogenic, coincident fluorescence, electron, and ion beam microscope

Author:

Boltje Daan B12ORCID,Hoogenboom Jacob P1,Jakobi Arjen J3ORCID,Jensen Grant J45ORCID,Jonker Caspar TH2,Kaag Max J1,Koster Abraham J6ORCID,Last Mart GF26ORCID,de Agrela Pinto Cecilia3,Plitzko Jürgen M7ORCID,Raunser Stefan8ORCID,Tacke Sebastian8,Wang Zhexin8ORCID,van der Wee Ernest B1ORCID,Wepf Roger9,den Hoedt Sander2

Affiliation:

1. Department of Imaging Physic, Delft University of Technology

2. Delmic B.V

3. Kavli Institute of Nanoscience, Delft University of Technology

4. California Institute of Technology

5. Brigham Young University

6. Department of Cell and Chemical Biology, Leiden University Medical Center

7. CryoEM Technology, Max Planck Institute of Biochemistry

8. Department of Structural Biochemistry, Max Planck Institute of Molecular Physiology

9. Centre for Microscopy and Microanalysis, University of Queensland

Abstract

Cryogenic electron tomography (cryo-ET) combined with subtomogram averaging, allows in situ visualization and structure determination of macromolecular complexes at subnanometre resolution. Cryogenic focused ion beam (cryo-FIB) micromachining is used to prepare a thin lamella-shaped sample out of a frozen-hydrated cell for cryo-ET imaging, but standard cryo-FIB fabrication is blind to the precise location of the structure or proteins of interest. Fluorescence-guided focused ion beam (FIB) milling at target locations requires multiple sample transfers prone to contamination, and relocation and registration accuracy is often insufficient for 3D targeting. Here, we present in situ fluorescence microscopy-guided FIB fabrication of a frozen-hydrated lamella to address this problem: we built a coincident three-beam cryogenic correlative microscope by retrofitting a compact cryogenic microcooler, custom positioning stage, and an inverted widefield fluorescence microscope (FM) on an existing FIB scanning electron microscope. We show FM controlled targeting at every milling step in the lamella fabrication process, validated with transmission electron microscope tomogram reconstructions of the target regions. The ability to check the lamella during and after the milling process results in a higher success rate in the fabrication process and will increase the throughput of fabrication for lamellae suitable for high-resolution imaging.

Funder

Nederlandse Organisatie voor Wetenschappelijk Onderzoek

National Institutes of Health

European Commission

Eurostars

European Research Council

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

Reference41 articles.

1. Soft-matter/trackpy;Allan,2021

2. Site-Specific cryo-focused ion beam sample preparation guided by 3D correlative microscopy;Arnold;Biophysical Journal,2016

3. Last MFG;Boltje,2022

4. PSF-extractor;Boltje,2022

5. Automated cryo-lamella preparation for high-throughput in-situ structural biology;Buckley;Journal of Structural Biology,2020

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