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High-speed single molecule imaging datasets of membrane proteins in rat basophilic leukemia cells.


ABSTRACT: A high-speed fluorescence microscope operating at a 490?Hz frame rate was used to image two different membrane proteins- the high-affinity IgE receptor Fc?RI, a transmembrane protein, and an outer-leaflet GPI-anchored protein. The IgE receptor was imaged via IgE labeled with Janelia Fluor 646 and the GPI-anchored protein was imaged using a GPI-GFP fusion protein and an ATTO 647?N labeled anti-GFP nanobody. Data was collected for both proteins in untreated cells and cells that had actin stabilized by phalloidin. This dataset can be used for development and testing of single-particle tracking methods on experimental data and to explore the hypothesis that the actin cytoskeleton may affect the movement of membrane proteins.

SUBMITTER: Mazloom-Farsibaf H 

PROVIDER: S-EPMC7168344 | biostudies-literature | 2020 Jun

REPOSITORIES: biostudies-literature

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High-speed single molecule imaging datasets of membrane proteins in rat basophilic leukemia cells.

Mazloom-Farsibaf Hanieh H   Kanagy William K WK   Lidke Diane S DS   Lidke Keith A KA  

Data in brief 20200406


A high-speed fluorescence microscope operating at a 490 Hz frame rate was used to image two different membrane proteins- the high-affinity IgE receptor FcɛRI, a transmembrane protein, and an outer-leaflet GPI-anchored protein. The IgE receptor was imaged via IgE labeled with Janelia Fluor 646 and the GPI-anchored protein was imaged using a GPI-GFP fusion protein and an ATTO 647 N labeled anti-GFP nanobody. Data was collected for both proteins in untreated cells and cells that had actin stabilize  ...[more]

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