Recovering true FRET efficiencies from smFRET investigations requires triplet state mitigation

Author:

Pati Avik K.ORCID,Kilic ZelihaORCID,Martin Maxwell I.,Terry Daniel S.,Borgia AlessandroORCID,Bar SukantaORCID,Jockusch SteffenORCID,Kiselev RomanORCID,Altman Roger B.,Blanchard Scott C.ORCID

Abstract

AbstractSingle-molecule fluorescence resonance energy transfer (smFRET) methods employed to quantify time-dependent compositional and conformational changes within biomolecules require elevated illumination intensities to recover robust photon emission streams from individual fluorophores. Here we show that outside the weak-excitation limit, and in regimes where fluorophores must undergo many rapid cycles of excitation and relaxation, non-fluorescing, excitation-induced triplet states with lifetimes orders of magnitude longer lived than photon-emitting singlet states degrade photon emission streams from both donor and acceptor fluorophores resulting in illumination-intensity-dependent changes in FRET efficiency. These changes are not commonly taken into consideration; therefore, robust strategies to suppress excited state accumulations are required to recover accurate and precise FRET efficiency, and thus distance, estimates. We propose both robust triplet state suppression and data correction strategies that enable the recovery of FRET efficiencies more closely approximating true values, thereby extending the spatial and temporal resolution of smFRET.

Funder

Foundation for the National Institutes of Health

National Institutes of Health

Publisher

Springer Science and Business Media LLC

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