Novel calibration method for flow cytometric fluorescence resonance energy transfer measurements between visible fluorescent proteins

被引:40
作者
Nagy, P
Bene, L
Hyun, WC
Vereb, G
Braun, M
Antz, C
Paysan, J
Damjanovich, S
Park, JW
Szöllosi, J
机构
[1] Univ Debrecen, Res Ctr Mol Med, Hungarian Acad Sci, Dept Biophys & Cell Biol,Med & Hlth Sci Ctr, H-4012 Debrecen, Hungary
[2] Univ Debrecen, Res Ctr Mol Med, Hungarian Acad Sci, Cell Biophys Work Grp, H-4012 Debrecen, Hungary
[3] Univ Calif San Francisco, Ctr Canc, San Francisco, CA 94143 USA
[4] Univ Calif San Francisco, Dept Hematol Oncol, San Francisco, CA 94143 USA
[5] Otogene GmbH, Tubingen, Germany
[6] Tech Univ Darmstadt, Inst Zool Dev Biol & Neurogenet, D-64287 Darmstadt, Germany
关键词
flow cytometry; fluorescence resonance energy transfer; green fluorescent protein;
D O I
10.1002/cyto.a.20164
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Background: The combination of fluorescence resonance energy transfer (FRET) and flow cytometry offers a statistically firm approach to study protein associations. Fusing green fluorescent protein (GFP) to a studied protein usually does not disturb the normal function of a protein, but quantitation of FRET efficiency calculated between GFP derivatives poses a problem in flow cytometry. Methods: We generated chimeras in which cyan fluorescent protein (CFP) was separated by amino acid linkers of different sizes from yellow fluorescent protein (YFP) and used them to calibrate the cell-by-cell flow cytometric FRET measurements carried out on two different dual-laser flow cytometers. Then, CFP-Kip1 was coexpressed in yeast cells with YFP and cyclin-dependent kinase-2 (Cdk2) and served as a positive control for FRET measurements, and CFP-Kip1 coexpressed with a random peptide fused to YFP was the negative control. Results: We measured donor, direct, and sensitized acceptor fluorescence intensities and developed a novel way to calculate a factor (a) that characterized the fluorescence intensity of acceptor molecules relative to the same number of excited donor molecules, which is essential for quantifying FRET efficiency. This was achieved by calculating FRET efficiency in two different ways and minimizing the squared difference between the two results by changing a. Our method reliably detected the association of Cdk2 with its inhibitor, Kip1, whereas the nonspecific FRET efficiency between Cdk2 and a random peptide was negligible. We identified and sorted subpopulations of yeast cells showing interaction between the studied proteins. Conclusions: We have described a straightforward novel calibration method to accurately quantitate FRET efficiency between GFP derivatives in flow cytometry. (c) 2005 International Society for Analytical Cytology.
引用
收藏
页码:86 / 96
页数:11
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