Multiparameter fluorescence image spectroscopy to study molecular interactions

被引:54
作者
Weidtkamp-Peters, Stefanie [1 ]
Felekyan, Suren [1 ]
Bleckmann, Andrea [2 ]
Simon, Ruediger [2 ]
Becker, Wolfgang [3 ]
Kuehnemuth, Ralf [1 ]
Seidel, Claus A. M. [1 ]
机构
[1] Univ Dusseldorf, Lehrstuhl Mol Phys Chem, D-40225 Dusseldorf, Germany
[2] Univ Dusseldorf, Inst Genet, D-40225 Dusseldorf, Germany
[3] Becker & Hickl GmbH, D-12277 Berlin, Germany
关键词
CROSS-CORRELATION SPECTROSCOPY; PROTEIN-PROTEIN INTERACTIONS; DOMAIN-DNA COMPLEX; SINGLE-MOLECULE; CRYSTAL-STRUCTURE; FRET; LIFETIME; MICROSCOPY; EXPRESSION; DIFFUSION;
D O I
10.1039/b903245m
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Multiparameter Fluorescence Image Spectroscopy (MFIS) is used to monitor simultaneously a variety of fluorescence parameters in confocal fluorescence microscopy. As the photons are registered one by one, MFIS allows for fully parallel recording of Fluorescence Correlation/Cross Correlation Spectroscopy (FCS/FCCS), fluorescence lifetime and pixel/image information over time periods of hours with picosecond accuracy. The analysis of the pixel fluorescence information in higher-dimensional histograms maximizes the selectivity of fluorescence microscopic methods. Moreover it facilitates a statistically-relevant data analysis of the pixel information which makes an efficient detection of heterogeneities possible. The reliability of MFIS has been demonstrated for molecular interaction studies in different complex environments: (I) detecting the heterogeneity of diffusion properties of the dye Rhodamine 110 in a sepharose bead, (II) Forster Resonance Energy Transfer (FRET) studies in mammalian HEK293 cells, and (III) FRET study of the homodimerisation of the transcription factor BIM1 in plant cells. The multidimensional analysis of correlated changes of several parameters measured by FRET, FCS, fluorescence lifetime and anisotropy increases the robustness of the analysis significantly. The economic use of photon information allows one to keep the expression levels of fluorescent protein-fusion proteins as low as possible (down to the single-molecule
引用
收藏
页码:470 / 480
页数:11
相关论文
共 60 条
[1]   Fluorescence cross-correlation spectroscopy in living cells [J].
Bacia, K ;
Kim, SA ;
Schwille, P .
NATURE METHODS, 2006, 3 (02) :83-89
[2]   Two-hybrid fluorescence cross-correlation spectroscopy detects protein-protein interactions in vivo [J].
Baudendistel, N ;
Müller, G ;
Waldeck, W ;
Angel, P ;
Langowski, J .
CHEMPHYSCHEM, 2005, 6 (05) :984-990
[3]   Fluorescence lifetime images and correlation spectra obtained by multidimensional time-correlated single photon counting [J].
Becker, W ;
Bergmann, A ;
Haustein, E ;
Petrasek, Z ;
Schwille, P ;
Biskup, C ;
Kelbauskas, L ;
Benndorf, K ;
Klöcker, N ;
Anhut, T ;
Riemann, I ;
König, K .
MICROSCOPY RESEARCH AND TECHNIQUE, 2006, 69 (03) :186-195
[4]   Multi-wavelength TCSPC lifetime imaging [J].
Becker, W ;
Bergmann, A ;
Biskup, C ;
Zimmer, T ;
Klöcker, N ;
Benndorf, K .
MULTIPHOTON MICROSCOPY IN THE BIOMEDICAL SCIENCES II, 2002, 4620 :79-84
[5]  
Becker W., 2005, ADV TIME CORRELATED
[6]   FRET between cardiac Na+ channel subunits measured with a confocal microscope and a streak camera [J].
Biskup, C ;
Zimmer, T ;
Benndorf, K .
NATURE BIOTECHNOLOGY, 2004, 22 (02) :220-224
[7]   Multi-dimensional fluorescence lifetime and FRET measurements [J].
Biskup, Christoph ;
Zimmer, Thomas ;
Kelbauskas, Laimonas ;
Hoffmann, Birgit ;
Kloecker, Nikolaj ;
Becker, Wolfgang ;
Bergmann, Axel ;
Benndorf, Klaus .
MICROSCOPY RESEARCH AND TECHNIQUE, 2007, 70 (05) :442-451
[8]  
BROCHON JC, 1994, METHOD ENZYMOL, V240, P262
[9]   Raster image correlation spectroscopy (RICS) for measuring fast protein dynamics and concentrations with a commercial laser scanning confocal microscope [J].
Brown, C. M. ;
Dalal, R. B. ;
Hebert, B. ;
Digman, M. A. ;
Horwitz, A. R. ;
Gratton, E. .
JOURNAL OF MICROSCOPY-OXFORD, 2008, 229 (01) :78-91
[10]   Using FRAP and mathematical modeling to determine the in vivo kinetics of nuclear proteins [J].
Carrero, G ;
McDonald, D ;
Crawford, E ;
de Vries, G ;
Hendzel, MJ .
METHODS, 2003, 29 (01) :14-28