| Literature DB >> 25780724 |
Simon P Poland1, Nikola Krstajić2, James Monypenny1, Simao Coelho1, David Tyndall2, Richard J Walker3, Viviane Devauges1, Justin Richardson3, Neale Dutton2, Paul Barber4, David Day-Uei Li5, Klaus Suhling6, Tony Ng7, Robert K Henderson2, Simon M Ameer-Beg1.
Abstract
We demonstrate diffraction limited multiphoton imaging in a massively parallel, fully addressable time-resolved multi-beam multiphoton microscope capable of producing fluorescence lifetime images with sub-50ps temporal resolution. This imaging platform offers a significant improvement in acquisition speed over single-beam laser scanning FLIM by a factor of 64 without compromising in either the temporal or spatial resolutions of the system. We demonstrate FLIM acquisition at 500 ms with live cells expressing green fluorescent protein. The applicability of the technique to imaging protein-protein interactions in live cells is exemplified by observation of time-dependent FRET between the epidermal growth factor receptor (EGFR) and the adapter protein Grb2 following stimulation with the receptor ligand. Furthermore, ligand-dependent association of HER2-HER3 receptor tyrosine kinases was observed on a similar timescale and involved the internalisation and accumulation or receptor heterodimers within endosomes. These data demonstrate the broad applicability of this novel FLIM technique to the spatio-temporal dynamics of protein-protein interaction.Entities:
Keywords: (040.1240) Arrays; (090.1970) Diffractive optics; (170.2520) Fluorescence microscopy; (180.0180) Microscopy; (180.4315) Nonlinear microscopy
Year: 2015 PMID: 25780724 PMCID: PMC4354599 DOI: 10.1364/BOE.6.000277
Source DB: PubMed Journal: Biomed Opt Express ISSN: 2156-7085 Impact factor: 3.732