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Fluorescence resonance energy

Deniz A A, Dahan M, Grunwell J R, Ha T, Faulhaber A E, Chemla D S, Weiss S and Schultz P G 1999 Single-pair fluorescence resonance energy transfer on freely diffusing molecules observation of Forster distance dependence and subpopulations Proc. Natl Acad. Sc/. USA 96 3670-5... [Pg.2511]

F statistic, 239, 241 False negatives, 152—153 False positives, 152—153 Fenoximone, 188 First-order kinetics, 167 Fluorescence resonance energy transfer, 182... [Pg.295]

Heim, R., and Tsien, R. Y. (1996). Engineering green fluorescent protein for improved brightness, longer wavelengths and fluorescence resonance energy transfer. Curr. Biol. 6 178-182. [Pg.402]

Isik N, Hereld D, Jin T (2008) Fluorescence resonance energy transfer imaging reveals that chemokine-binding modulates heterodimers of CXCR4 and CCR5 receptors. PLoS ONE... [Pg.244]

Toth PT, Ren D, Miller RJ (2004) Regulation of CXCR4 receptor dimerization by the chemokine SDF-lalpha and the HIV-1 coat protein gpl20 a fluorescence resonance energy transfer (FRET) study. J Pharmacol Exp Ther 310 8-17 Tran PB, Miller RJ (2005) HIV-1, chemokines and neurogenesis. Neurotox Res 8 149-158 Tran PB, Ren D, Veldhouse TJ, Miller RJ (2004) Chemokine receptors are expressed widely by embryonic and adult neural progenitor cells. J Neurosci Res 76 20-34... [Pg.249]

When the proteins are in close proximity the Europium-cryptate emission can be absorbed by the acceptor (such as allophycocyanin [APC], or XL) which emits at a higher wavelength. When the two proteins are far apart, no fluorescence resonance energy transfer (FRET) occurs. [Pg.39]

Toth PT, Ren D, Miller RJ. Regulation of CXCR4 receptor dimerization by the chemokine SDF-lalpha and the HIV-1 coat protein gpl20 a fluorescence resonance energy transfer (FRET) study. J Pharmacol Exp Ther 2004 310(1) 8-17. [Pg.284]

Clegg RM (1996) Fluorescence resonance energy transfer. In Wang XF, Flerman B (eds) Fluorescence imaging spectroscopy and microscopy. John Wiley, New York, pp 179-252... [Pg.23]

Selvin PR (2000) The renaissance of fluorescence resonance energy transfer. Nat Struct Biol 7 730-734... [Pg.23]

Takakusa H, Kikuchi K, Urano Y, Kojima H, Nagano T (2003) A novel design method of ratiometric fluorescent probes based on fluorescence resonance energy transfer switching by spectral overlap integral. Chemistry 9 1479-1485... [Pg.23]

Giordano L, Jovin TM, Irie M, Jares-Erijman EA (2002) Diheteroarylethenes as thermally stable photoswitchable acceptors in photochromic fluorescence resonance energy transfer (pcFRET). J Am Chem Soc 124 7481-7489... [Pg.23]

Algar WR, Krull UJ (2008) Quantum dots as donors in fluorescence resonance energy transfer for the bioanalysis of nucleic acids, proteins, and other biological molecules. Anal Bioanal Chem 391 1609-1618... [Pg.24]

Following previous work, Hagiwara and collaborators [71] recently prepared 5 -terminal acridone-labeled DNAs, using the succinimidyl ester 24 of the acridone acetic acid 23 reported before [69], and evaluated their use as donors for a fluorescence resonance energy transfer (FRET) system in combination with 3 -dabcyl-tagged DNA... [Pg.36]

Hagiwara Y, Hasegawa T, Shoji A et al (2008) Acridone-tagged DNA as a new probe for DNA detection by fluorescence resonance energy transfer and for mismatch DNA recognition. Bioorg Med Chem 16 7013-7020... [Pg.58]

Oswald B, Gruber M, Bohmer M, Lehmann F, Probst M, Wolfbeis OS (2001) Novel diode laser-compatible fluorophores and their application to single molecule detection, protein labeling and fluorescence resonance energy transfer immunoassay. Photochem Photobiol 74 237-245... [Pg.103]

In an important extension of the above strategy, fluorescence resonance energy transfer (FRET) was used to screen room-temperature Heck reactions.41 FRET had previously been... [Pg.512]

FRET is often referred to as the acronym for fluorescence resonance energy transfer . This name is a misnomer, but this use has... [Pg.53]

Clegg, R. M. (1992). Fluorescence resonance energy transfer and nucleic acids. Methods. Enzymol. 211, 353-358. [Pg.63]

Clegg, R. M. (1996). Fluorescence resonance energy transfer. In Fluorescence Imaging. Spectroscopy and Microscopy. Vol. 137. (Wang, X. F. and Herman, B., eds.). John Wiley Sons, New York, pp. 179-252. [Pg.63]

Selvin, P. (1995). Fluorescence resonance energy transfer. Academic Press, San Diego. [Pg.63]

Ha, T. (2001). Single-molecule fluorescence resonance energy transfer. Methods 25, 78-86. [Pg.64]

Chen, X. and Kwok, P. Y. (1999). Homogeneous genotyping assays for single nucleotide polymorphisms with fluorescence resonance energy transfer detection. Genet. Anal. 14, 157-63. [Pg.64]

Szolldsi, J., Damjanovich, S. and Matyus, L. (1998). Application of fluorescence resonance energy transfer in the clinical laboratory Routine and research. Cytometry 34, 159-79. [Pg.65]

Gordon, G. W., Berry, G., Liang, X. H., Levine, B. and Herman, B. (1998). Quantitative fluorescence resonance energy transfer measurements using fluorescence microscopy. Biophys. J. 74, 2702-13. [Pg.65]

Jovin, T. and Arndt-Jovin, D. (1989). FRET microscopy Digital imaging of fluorescence resonance energy transfer. Application in cell biology. In Cell Structure and Function by Microspectrofluorometry (Kohen, E., JG, H. and Ploem, J., eds.). Academic Press, London, pp. 99-117. [Pg.65]

Periasamy, A. (2001). Fluorescence resonance energy transfer microscopy A mini review. J. Biomed. Opt. 6, 287-91. [Pg.65]


See other pages where Fluorescence resonance energy is mentioned: [Pg.2659]    [Pg.266]    [Pg.182]    [Pg.71]    [Pg.74]    [Pg.44]    [Pg.269]    [Pg.376]    [Pg.263]    [Pg.166]    [Pg.423]    [Pg.927]    [Pg.934]    [Pg.307]    [Pg.11]    [Pg.64]    [Pg.65]   


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Chemokine receptor dimerization fluorescence resonance energy transfer

Energy resonant

Enhanced acceptor fluorescence-resonance energy transfer

Fluorescence resonance energy activation assay

Fluorescence resonance energy analysis

Fluorescence resonance energy applications

Fluorescence resonance energy biosensor

Fluorescence resonance energy donor/acceptor, dipole orientation

Fluorescence resonance energy sensors, designs

Fluorescence resonance energy spectral overlap

Fluorescence resonance energy thresholding

Fluorescence resonance energy time-resolved measurements

Fluorescence resonance energy transfer

Fluorescence resonance energy transfer (FRET efficiency

Fluorescence resonance energy transfer (FRET experiments

Fluorescence resonance energy transfer (FRET principles

Fluorescence resonance energy transfer , caspase

Fluorescence resonance energy transfer FRET)

Fluorescence resonance energy transfer FRET) assays

Fluorescence resonance energy transfer FRET) study

Fluorescence resonance energy transfer acceptors

Fluorescence resonance energy transfer based

Fluorescence resonance energy transfer decay constant

Fluorescence resonance energy transfer determination

Fluorescence resonance energy transfer experiments

Fluorescence resonance energy transfer luminescence

Fluorescence resonance energy transfer peaks

Fluorescence resonance energy transfer quench

Fluorescence resonance energy transfer reporters

Fluorescence resonance energy transfer single molecules

Fluorescence resonance energy transfer time-resolved

Fluorescence resonant energy transfer

Fluorescence resonant energy transfer FRET)

Fluorescence resonant energy transfer proteins

Fluorescent imaging fluorescence resonance energy transfer

Fluorescent resonance energy transfer

Fluorescent resonance energy transfer FRET)

Fluorescent resonant energy transfer

Forster distance Fluorescence resonance energy transfer

Quenching mechanism fluorescence resonance energy transfer

Resonance energy

Resonance energy transfer single-photon fluorescence

Resonance fluorescence

Sensing Based on Fluorescence Resonance Energy Transfer (FRET)

Single molecule fluorescence resonance energy

Single molecule fluorescence resonance energy transfer measurements

Single pair fluorescence resonance energy

Single pair fluorescence resonance energy transfer

Time-resolved fluorescence resonance energy

Time-resolved fluorescence resonance energy transfer assay

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