Anomalous surplus energy transfer observed with multiple FRET acceptors.
about
Comparative analysis of fluorescence resonance energy transfer (FRET) and proximity ligation assay (PLA)Red fluorescent protein-aequorin fusions as improved bioluminescent Ca2+ reporters in single cells and miceUnderstanding FRET as a research tool for cellular studiesDetermination of the quaternary structure of a bacterial ATP-binding cassette (ABC) transporter in living cellsFRET microscopy in 2010: the legacy of Theodor Förster on the 100th anniversary of his birthThree-color spectral FRET microscopy localizes three interacting proteins in living cellsSingle cell optical imaging and spectroscopy.Peripheral ligand-binding site in cytochrome P450 3A4 located with fluorescence resonance energy transfer (FRET)Direct measurements of oscillatory glycolysis in pancreatic islet β-cells using novel fluorescence resonance energy transfer (FRET) biosensors for pyruvate kinase M2 activityAn intermolecular FRET sensor detects the dynamics of T cell receptor clusteringFRET characterisation for cross-bridge dynamics in single-skinned rigor muscle fibres.The intraviral protein interaction network of hepatitis C virus.Fluorescence lifetime readouts of Troponin-C-based calcium FRET sensors: a quantitative comparison of CFP and mTFP1 as donor fluorophores.The impact of heterogeneity and dark acceptor states on FRET: implications for using fluorescent protein donors and acceptorsSimultaneous quantitative live cell imaging of multiple FRET-based biosensors.Experimental verification of the kinetic theory of FRET using optical microspectroscopy and obligate oligomers.Quantitative FRET measurement using emission-spectral unmixing with independent excitation crosstalk correction.BRET evidence that β2 adrenergic receptors do not oligomerize in cells.Wide-field microscopic FRET imaging using simultaneous spectral unmixing of excitation and emission spectra.Design and development of high bioluminescent resonance energy transfer efficiency hybrid-imaging constructs.Quantification of Förster resonance energy transfer by monitoring sensitized emission in living plant cells.Estimating the distance separating fluorescent protein FRET pairs.Advanced fluorescence microscopy techniques--FRAP, FLIP, FLAP, FRET and FLIM.Application of fluorescence resonance energy transfer in protein studiesFRET from single to multiplexed signaling events.Multichannel wide-field microscopic FRET imaging based on simultaneous spectral unmixing of excitation and emission spectra.On the nature of long range electronic coupling in a medium: distance and orientational dependence for chromophores in molecular aggregates.
P2860
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P2860
Anomalous surplus energy transfer observed with multiple FRET acceptors.
description
2009 nî lūn-bûn
@nan
2009 թուականի Նոյեմբերին հրատարակուած գիտական յօդուած
@hyw
2009 թվականի նոյեմբերին հրատարակված գիտական հոդված
@hy
2009年の論文
@ja
2009年論文
@yue
2009年論文
@zh-hant
2009年論文
@zh-hk
2009年論文
@zh-mo
2009年論文
@zh-tw
2009年论文
@wuu
name
Anomalous surplus energy transfer observed with multiple FRET acceptors.
@ast
Anomalous surplus energy transfer observed with multiple FRET acceptors.
@en
type
label
Anomalous surplus energy transfer observed with multiple FRET acceptors.
@ast
Anomalous surplus energy transfer observed with multiple FRET acceptors.
@en
prefLabel
Anomalous surplus energy transfer observed with multiple FRET acceptors.
@ast
Anomalous surplus energy transfer observed with multiple FRET acceptors.
@en
P2860
P1433
P1476
Anomalous surplus energy transfer observed with multiple FRET acceptors.
@en
P2093
Paul S Blank
Srinagesh V Koushik
P2860
P356
10.1371/JOURNAL.PONE.0008031
P407
P577
2009-11-25T00:00:00Z