Literature DB >> 34179246

Detection of Protein Interactions in the Cytoplasm and Periplasm ofEscherichia coli by Förster Resonance Energy Transfer.

Nils Y Meiresonne1, Svetlana Alexeeva1, René van der Ploeg1, Tanneke den Blaauwen1.   

Abstract

This protocol was developed to qualitatively and quantitatively detect protein-protein interactions in Escherichia coli by Förster Resonance Energy Transfer (FRET). The described assay allows for the previously impossible in vivo screening of periplasmic protein-protein interactions. In FRET, excitation of a donor fluorescent molecule results in the transfer of energy to an acceptor fluorescent molecule, which will then emit light if the distance between them is within the 1-10 nm range. Fluorescent proteins can be genetically encoded as fusions to proteins of interest and expressed in the cell and therefore FRET protein-protein interaction experiments can be performed in vivo. Donor and acceptor fluorescent protein fusions are constructed for bacterial proteins that are suspected to interact. These fusions are co-expressed in bacterial cells and the fluorescence emission spectra are measured by subsequently exciting the donor and the acceptor channel. A partial overlap between the emission spectrum of the donor and the excitation spectrum of the acceptor is a prerequisite for FRET. Donor excitation can cross-excite the acceptor for a known percentage even in the absence of FRET. By measuring reference spectra for the background, donor-only and acceptor-only samples, expected emission spectra can be calculated. Sensitized emission for the acceptor on top of the expected spectrum can be attributed to FRET and can be quantified by spectral unmixing.
Copyright © 2018 The Authors; exclusive licensee Bio-protocol LLC.

Entities:  

Keywords:  Bacteria; Cytoplasm; FRET; Periplasm; Protein interactions; SYFP2; mCherry; mKO; mNeonGreen

Year:  2018        PMID: 34179246      PMCID: PMC8203949          DOI: 10.21769/BioProtoc.2697

Source DB:  PubMed          Journal:  Bio Protoc        ISSN: 2331-8325


  17 in total

1.  Receptor sensitivity in bacterial chemotaxis.

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Review 2.  Fluorescence resonance energy transfer and nucleic acids.

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7.  Single cell FRET analysis for the identification of optimal FRET-pairs in Bacillus subtilis using a prototype MEM-FLIM system.

Authors:  Ruud G J Detert Oude Weme; Ákos T Kovács; Sander J G de Jong; Jan-Willem Veening; Jeroen Siebring; Oscar P Kuipers
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9.  Quantitative assessment of fluorescent proteins.

Authors:  Paula J Cranfill; Brittney R Sell; Michelle A Baird; John R Allen; Zeno Lavagnino; H Martijn de Gruiter; Gert-Jan Kremers; Michael W Davidson; Alessandro Ustione; David W Piston
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10.  Activity-Related Conformational Changes in d,d-Carboxypeptidases Revealed by In Vivo Periplasmic Förster Resonance Energy Transfer Assay in Escherichia coli.

Authors:  Nils Y Meiresonne; René van der Ploeg; Mark A Hink; Tanneke den Blaauwen
Journal:  mBio       Date:  2017-09-12       Impact factor: 7.867

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