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Multicolor fluorescence fluctuation spectroscopy in living cells via spectral detection

  • Signaling pathways in biological systems rely on specific interactions between multiple biomolecules. Fluorescence fluctuation spectroscopy provides a powerful toolbox to quantify such interactions directly in living cells. Cross-correlation analysis of spectrally separated fluctuations provides information about intermolecular interactions but is usually limited to two fluorophore species. Here, we present scanning fluorescence spectral correlation spectroscopy (SFSCS), a versatile approach that can be implemented on commercial confocal microscopes, allowing the investigation of interactions between multiple protein species at the plasma membrane. We demonstrate that SFSCS enables cross-talk-free cross-correlation, diffusion, and oligomerization analysis of up to four protein species labeled with strongly overlapping fluorophores. As an example, we investigate the interactions of influenza A virus (IAV) matrix protein 2 with two cellular host factors simultaneously. We furthermore apply raster spectral image correlation spectroscopySignaling pathways in biological systems rely on specific interactions between multiple biomolecules. Fluorescence fluctuation spectroscopy provides a powerful toolbox to quantify such interactions directly in living cells. Cross-correlation analysis of spectrally separated fluctuations provides information about intermolecular interactions but is usually limited to two fluorophore species. Here, we present scanning fluorescence spectral correlation spectroscopy (SFSCS), a versatile approach that can be implemented on commercial confocal microscopes, allowing the investigation of interactions between multiple protein species at the plasma membrane. We demonstrate that SFSCS enables cross-talk-free cross-correlation, diffusion, and oligomerization analysis of up to four protein species labeled with strongly overlapping fluorophores. As an example, we investigate the interactions of influenza A virus (IAV) matrix protein 2 with two cellular host factors simultaneously. We furthermore apply raster spectral image correlation spectroscopy for the simultaneous analysis of up to four species and determine the stoichiometry of ternary IAV polymerase complexes in the cell nucleus.show moreshow less

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Author details:Valentin DunsingORCiDGND, Annett PetrichORCiDGND, Salvatore ChiantiaORCiDGND
DOI:https://doi.org/10.7554/eLife.69687
ISSN:2050-084X
Pubmed ID:https://pubmed.ncbi.nlm.nih.gov/34494547
Title of parent work (English):eLife
Publisher:eLife Sciences Publications
Place of publishing:Cambridge
Publication type:Article
Language:English
Year of first publication:2021
Publication year:2021
Release date:2023/01/05
Tag:Viruses; diffusion; fluorescence; interactions; optical microscopy; protein-protein; virus assembly
Volume:10
Article number:e69687
Number of pages:33
Funding institution:German Research Foundation (DFG)German Research Foundation (DFG) [254850309]; DFGGerman Research Foundation (DFG)European Commission [INST 336/114-1 FUGG]
Organizational units:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Biochemie und Biologie
DDC classification:5 Naturwissenschaften und Mathematik / 50 Naturwissenschaften / 500 Naturwissenschaften und Mathematik
6 Technik, Medizin, angewandte Wissenschaften / 60 Technik / 600 Technik, Technologie
Peer review:Referiert
License (German):License LogoCC-BY - Namensnennung 4.0 International
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