Source: Manko, H. et al., FLIM-FRET Measurements of Protein-Protein Interactions in Live Bacteria. J. Vis. Exp. (2020)
The video describes the FLIM-FRET imaging technique to determine the protein-protein interaction in live bacteria expressing cytoplasmic proteins labeled with fluorescent proteins, a donor eGFP, and acceptor mCherry. The combined technique also allows the quantification of the interacting proteins.
1. Preparation of agarose pad (Figure 1)
2. Imaging with a two-photon microscopy setup
NOTE: We are using a homemade two-photon excitation scanning inverted microscope with a 60x 1.2NA water immersion objective operating in de-scanned fluorescence collection mode. Two-photon excitation wavelength is set at 930 nm. It is provided by a Ti:Sapphire laser (80 MHz repetition rate, ≈ 70 fs pulse width) working at 10-20 mW. Fluorescence photons were collected through a 680 nm short pass filter and a 525/50 nm band-pass filter before being directed to a fiber-coupled avalanche photo-diode connected to a time-correlated single photon counting (TCSPC) module. The microscope is also equipped with a transmission fluorescence lamp. Several FLIM-FRET microscopes are now commercially available and many imaging facilities are equipped with setups able to perform FLIM-FRET measurements.
Figure 1. Agarose pad preparation.
Figure 2. Schematic representation of the interface of microscope control software
The authors have nothing to disclose.
525/50 nm band-pass filter | F37-516, AHF, Germany | ||
680 nm short pass filter | F37-516, AHF, Germany | ||
Agarose | Sigma-Aldrich | A9539 | |
Fiber-coupled avalanche photo-diode | SPCM-AQR-14- FC, Perkin Elmer | ||
Glass coverslips (Thickness No. 1.5, 20×20mm | Knitel glass | MS0011 | |
Microscope slides (25×75mm) | Knitel glass | MS0057 | |
TCSPC module | SPC830, Becker & Hickl, Germany | ||
Ti:Sapphire laser | Insight DeepSee, Spectra Physics |