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Action-FRET of a Gaseous Protein
Authors:Steven Daly  Geoffrey Knight  Mohamed Abdul Halim  Alexander Kulesza  Chang Min Choi  Fabien Chirot  Luke MacAleese  Rodolphe Antoine  Philippe Dugourd
Affiliation:1.Institut Lumière Matière,Université Lyon 1-CNRS, Université de Lyon,Villeurbanne cedex,France;2.Institut des Sciences Analytiques,Université Lyon 1 – CNRS, Université de Lyon,Villeurbanne Cedex,France
Abstract:Mass spectrometry is an extremely powerful technique for analysis of biological molecules, in particular proteins. One aspect that has been contentious is how much native solution-phase structure is preserved upon transposition to the gas phase by soft ionization methods such as electrospray ionization. To address this question—and thus further develop mass spectrometry as a tool for structural biology—structure-sensitive techniques must be developed to probe the gas-phase conformations of proteins. Here, we report Förster resonance energy transfer (FRET) measurements on a ubiquitin mutant using specific photofragmentation as a reporter of the FRET efficiency. The FRET data is interpreted in the context of circular dichroism, molecular dynamics simulation, and ion mobility data. Both the dependence of the FRET efficiency on the charge state—where a systematic decrease is observed—and on methanol concentration are considered. In the latter case, a decrease in FRET efficiency with methanol concentration is taken as evidence that the conformational ensemble of gaseous protein cations retains a memory of the solution phase conformational ensemble upon electrospray ionization.
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