Characterization of two-photon excitation fluorescence lifetime imaging microscopy for protein localization

被引:138
作者
Chen, YE
Periasamy, A
机构
[1] Univ Virginia, Dept Biol, WM Keck Ctr Cellular Imaging, Charlottesville, VA 22904 USA
[2] Univ Virginia, Dept Biomed Engn, Charlottesville, VA 22904 USA
关键词
fluorescence resonance energy transfer (FRET); fluorescence lifetime imaging (FLIM); two-photon excitation; green fluorescent proteins (GFPs); CAATT/enhancer binding protein alpha (C/EBPu); protein-protein interactions;
D O I
10.1002/jemt.10430
中图分类号
R602 [外科病理学、解剖学]; R32 [人体形态学];
学科分类号
100101 ;
摘要
Two-photon excitation fluorescence resonance energy transfer (2P-FRET) imaging microscopy can provide details of specific protein molecule interactions inside living cells. Fluorophore molecules used for 2P-FRET imaging have characteristic absorption and emission spectra that introduce spectral cross-talk (bleed-through) in the FRET signal that should be removed in the 2P-FRET images, to establish that FRET has actually occurred and to have a basis for distance estimations. These contaminations in the FRET signal can be corrected using a mathematical algorithm to extract the true FRET signal. Another approach is 2P-FRET fluorescence lifetime imaging (FLIM). This methodology allows studying the dynamic behavior of protein-protein interactions in living cells and tissues. 2P-FRET-FLIM was used to study the dimerization of the CAATT/enhancer binding protein alpha (C/EBPalpha). Results show that the reduction in donor lifetime in the presence of acceptor reveals the dimerization of the protein molecules and also determines more precisely the distance between the donor and acceptor. We describe the development and characterization of the 2P-FRET-FLIM imaging system with the Bio-Rad Radiance2100 confocal/multiphoton microscopy system.
引用
收藏
页码:72 / 80
页数:9
相关论文
共 47 条
  • [11] Fluorescence lifetime imaging with picosecond resolution for biomedical applications
    Dowling, K
    Dayel, MJ
    Lever, MJ
    French, PMW
    Hares, JD
    Dymoke-Bradshaw, AKL
    [J]. OPTICS LETTERS, 1998, 23 (10) : 810 - 812
  • [12] Characterization of one- and two-photon excitation fluorescence resonance energy transfer microscopy
    Elangovan, M
    Wallrabe, H
    Chen, Y
    Day, RN
    Barroso, M
    Periasamy, A
    [J]. METHODS, 2003, 29 (01) : 58 - 73
  • [13] ELANGOVAN M, 2002, J MICROSCOPY, V1, P2
  • [14] Analysis of histology specimens using lifetime multiphoton microscopy
    Eliceiri, KW
    Fan, CH
    Lyons, GE
    White, JG
    [J]. JOURNAL OF BIOMEDICAL OPTICS, 2003, 8 (03) : 376 - 380
  • [15] Two-color green fluorescent protein time-lapse imaging
    Ellenberg, J
    Lippincott-Schwartz, J
    Presley, JF
    [J]. BIOTECHNIQUES, 1998, 25 (05) : 838 - +
  • [16] *ZWISCHENMOLEKULARE ENERGIEWANDERUNG UND FLUORESZENZ
    FORSTER, T
    [J]. ANNALEN DER PHYSIK, 1948, 2 (1-2) : 55 - 75
  • [17] Forster T, 1965, MODERN QUANTUM CHEMI, V3, P93
  • [18] FLUORESCENCE LIFETIME IMAGING MICROSCOPY (FLIM) - SPATIAL-RESOLUTION OF MICROSTRUCTURES ON THE NANOSECOND TIME-SCALE
    GADELLA, TWJ
    JOVIN, TM
    CLEGG, RM
    [J]. BIOPHYSICAL CHEMISTRY, 1993, 48 (02) : 221 - 239
  • [19] GERRITSEN HC, 2001, METHODS CELLULAR IMA, P309
  • [20] Goppert-Mayer M, 1931, ANN PHYS-BERLIN, V9, P273