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FRET characterisation for cross-bridge dynamics in single-skinned rigor muscle fibres
- Source :
- European Biophysics Journal
- Publisher :
- Springer Nature
-
Abstract
- In this work we demonstrate for the first time the use of Förster resonance energy transfer (FRET) as an assay to monitor the dynamics of cross-bridge conformational changes directly in single muscle fibres. The advantage of FRET imaging is its ability to measure distances in the nanometre range, relevant for structural changes in actomyosin cross-bridges. To reach this goal we have used several FRET couples to investigate different locations in the actomyosin complex. We exchanged the native essential light chain of myosin with a recombinant essential light chain labelled with various thiol-reactive chromophores. The second fluorophore of the FRET couple was introduced by three approaches: labelling actin, labelling SH1 cysteine and binding an adenosine triphosphate (ATP) analogue. We characterise FRET in rigor cross-bridges: in this condition muscle fibres are well described by a single FRET population model which allows us to evaluate the true FRET efficiency for a single couple and the consequent donor–acceptor distance. The results obtained are in good agreement with the distances expected from crystallographic data. The FRET characterisation presented herein is essential before moving onto dynamic measurements, as the FRET efficiency differences to be detected in an active muscle fibre are on the order of 10–15% of the FRET efficiencies evaluated here. This means that, to obtain reliable results to monitor the dynamics of cross-bridge conformational changes, we had to fully characterise the system in a steady-state condition, demonstrating firstly the possibility to detect FRET and secondly the viability of the present approach to distinguish small FRET variations. Electronic supplementary material The online version of this article (doi:10.1007/s00249-010-0624-9) contains supplementary material, which is available to authorised users.
- Subjects :
- FLIM
Fluorophore
Protein Conformation
Muscle Relaxation
Muscle Fibers, Skeletal
Acceptor photobleaching
Biophysics
Spectral analysis
Molecular Dynamics Simulation
Actomyosin interactio
Rigor muscle fibre
03 medical and health sciences
Molecular dynamics
chemistry.chemical_compound
Actomyosin interactions
0302 clinical medicine
Protein structure
Adenosine Triphosphate
Rigor muscle
Myosin
Fluorescence Resonance Energy Transfer
Actin
030304 developmental biology
Skin
0303 health sciences
Original Paper
rigor muscle fibre
General Medicine
Actomyosin
Chromophore
actomyosin interactions
spectral analysis
Biomechanical Phenomena
Muscle Rigidity
Crystallography
Muscle relaxation
Förster resonance energy transfer
chemistry
biological sciences
FRET
acceptor photobleaching
030217 neurology & neurosurgery
Muscle Contraction
Subjects
Details
- Language :
- English
- ISSN :
- 01757571
- Volume :
- 40
- Issue :
- 1
- Database :
- OpenAIRE
- Journal :
- European Biophysics Journal
- Accession number :
- edsair.doi.dedup.....bfe8ae1d16250c1e254c18ab89a61191
- Full Text :
- https://doi.org/10.1007/s00249-010-0624-9