4.5 Article

Imaging Protein Structure in Water at 2.7 nm Resolution by Transmission Electron Microscopy

Journal

BIOPHYSICAL JOURNAL
Volume 102, Issue 4, Pages L15-L17

Publisher

CELL PRESS
DOI: 10.1016/j.bpj.2012.01.009

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  1. Laboratory Directed Research and Development of Lawrence Berkeley National Laboratory

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We demonstrate an in situ transmission electron microscopy technique for imaging proteins in liquid water at room temperature. Liquid samples are loaded into a microfabricated environmental cell that isolates the sample from the vacuum with thin silicon nitride windows. We show that electron micrographs of acrosonnal bundles in water are similar to bundles imaged in ice, and we determined the resolution to be at least 2.7 nm at doses of similar to 35 e/angstrom(2). The resolution was limited by the thickness of the window and radiation damage. Surprisingly, we observed a smaller fall-off in the intensity of reflections in room-temperature water than in 98 K ice. Thus, our technique extends imaging of unstained and unlabeled macromolecular assemblies in water from the resolution of the light microscope to the nanometer resolution of the electron microscope. Our results suggest that real-time imaging of protein dynamics is conceptually feasible.

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