VitroJet: new features and case studies

Author:

Henderikx Rene J. M.,Mann DanielORCID,Domanska Aušra,Dong Jing,Shahzad Saba,Lak Behnam,Filopoulou Aikaterini,Ludig DamianORCID,Grininger Martin,Momoh Jeffrey,Laanto Elina,Oksanen Hanna M.ORCID,Bisikalo KyryloORCID,Williams Pamela A.ORCID,Butcher Sarah J.ORCID,Peters Peter J.ORCID,Beulen Bart W. A. M. M.

Abstract

Single-particle cryo-electron microscopy has become a widely adopted method in structural biology due to many recent technological advances in microscopes, detectors and image processing. Before being able to inspect a biological sample in an electron microscope, it needs to be deposited in a thin layer on a grid and rapidly frozen. The VitroJet was designed with this aim, as well as avoiding the delicate manual handling and transfer steps that occur during the conventional grid-preparation process. Since its creation, numerous technical developments have resulted in a device that is now widely utilized in multiple laboratories worldwide. It features plasma treatment, low-volume sample deposition through pin printing, optical ice-thickness measurement and cryofixation of pre-clipped Autogrids through jet vitrification. This paper presents recent technical improvements to the VitroJet and the benefits that it brings to the cryo-EM workflow. A wide variety of applications are shown: membrane proteins, nucleosomes, fatty-acid synthase, Tobacco mosaic virus, lipid nanoparticles, tick-borne encephalitis viruses and bacteriophages. These case studies illustrate the advancement of the VitroJet into an instrument that enables accurate control and reproducibility, demonstrating its suitability for time-efficient cryo-EM structure determination.

Funder

National Institutes of Health

Vetenskapsrådet

HORIZON EUROPE European Research Council

Publisher

International Union of Crystallography (IUCr)

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