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Visualizing conformational dynamics of proteins in solution and at the cell membrane.

Citation
Gordon, S. E., et al. “Visualizing Conformational Dynamics Of Proteins In Solution And At The Cell Membrane.”. Elife.
Center University of Washington
Author Sharona E Gordon, Mika Munari, William N Zagotta
Keywords FRET, MBP, biochemistry, chemical biology, membrane protein, molecular biophysics, noncanonical amino acid, none, protein dynamics, structural biology, transition metal
Abstract

Conformational dynamics underlie enzyme function, yet are generally inaccessible via traditional structural approaches. FRET has the potential to measure conformational dynamics in vitro and in intact cells, but technical barriers have thus far limited its accuracy, particularly in membrane proteins. Here, we combine amber codon suppression to introduce a donor fluorescent noncanonical amino acid with a new, biocompatible approach for labeling proteins with acceptor transition metals in a method called ACCuRET (Anap Cyclen-Cu resonance energy transfer). We show that ACCuRET measures absolute distances and distance changes with high precision and accuracy using maltose binding protein as a benchmark. Using cell unroofing, we show that ACCuRET can accurately measure rearrangements of proteins in native membranes. Finally, we implement a computational method for correcting the measured distances for the distance distributions observed in proteins. ACCuRET thus provides a flexible, powerful method for measuring conformational dynamics in both soluble proteins and membrane proteins.

Year of Publication
2018
Journal
eLife
Volume
7
Date Published
12/2018
ISSN Number
2050-084X
DOI
10.7554/eLife.37248
Alternate Journal
Elife
PMID
29923827
PMCID
PMC6056233
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