A method for imaging single molecules at the plasma membrane of live cells within tissue slices

Author:

Mashanov Gregory I.1ORCID,Nenasheva Tatiana A.2ORCID,Mashanova Tatiana3,Maclachlan Catherine1,Birdsall Nigel J.M.1ORCID,Molloy Justin E.1ORCID

Affiliation:

1. The Francis Crick Institute, London, UK

2. Russian Academy of Science, Koltzov Institute of Developmental Biology, Moscow, Russia

3. Village Vet Potters Bar, Potters Bar, UK

Abstract

Recent advances in light microscopy allow individual biological macromolecules to be visualized in the plasma membrane and cytosol of live cells with nanometer precision and ∼10-ms time resolution. This allows new discoveries to be made because the location and kinetics of molecular interactions can be directly observed in situ without the inherent averaging of bulk measurements. To date, the majority of single-molecule imaging studies have been performed in either unicellular organisms or cultured, and often chemically fixed, mammalian cell lines. However, primary cell cultures and cell lines derived from multi-cellular organisms might exhibit different properties from cells in their native tissue environment, in particular regarding the structure and organization of the plasma membrane. Here, we describe a simple approach to image, localize, and track single fluorescently tagged membrane proteins in freshly prepared live tissue slices and demonstrate how this method can give information about the movement and localization of a G protein–coupled receptor in cardiac tissue slices. In principle, this experimental approach can be used to image the dynamics of single molecules at the plasma membrane of many different soft tissue samples and may be combined with other experimental techniques.

Funder

Francis Crick Institute

Cancer Research UK

Medical Research Council

Wellcome Trust

Publisher

Rockefeller University Press

Subject

Physiology

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