Real-time detection of cellular death receptor-4 activation by fluorescence resonance energy transfer Journal Article


Authors: Dereli-Korkut, Z.; Gandhok, H.; Zeng, L. G.; Waqas, S.; Jiang, X.; Wang, S.
Article Title: Real-time detection of cellular death receptor-4 activation by fluorescence resonance energy transfer
Abstract: Targeted therapy involving the activation of death receptors DR4 and/or DR5 by its ligand, TRAIL, can selectively induce apoptosis in certain tumor cells. In order to profile the dynamic activation or trimerization of TRAIL-DR4 in live cells in real-time, the development of an apoptosis reporter cell line is essential. Fluorescence resonance energy transfer (FRET) technology via a FRET pair, cyan fluorescence protein (CFP) and yellow fluorescence protein (YFP), was used in this study. DR4-CFP and DR4-YFP were stably expressed in human lung cancer PC9 cells. Flow cytometer sorting and limited dilution coupled with fluorescence microscopy were used to select a monoclonal reporter cell line with high and compatible expression levels of DR4-CFP and DR4-YFP. FRET experiments were conducted and FRET efficiencies were monitored according to the Siegel's YFP photobleaching FRET protocol. Upon TRAIL induction a significant increase in FRET efficiencies from 5% to 9% demonstrated the ability of the DR4-CFP/YFP reporter cell line in monitoring the dynamic activation of TRAIL pathways. 3D reconstructed confocal images of DR4-CFP/YFP reporter cells exhibited a colocalized expression of DR4-CFP and DR4-YFP mainly on cell membranes. FRET results obtained during this study complements the use of epi-fluorescence microscopy for FRET analysis. The real-time FRET analysis allows the dynamic profiling of the activation of TRAIL pathways by using the time-lapse fluorescence microscopy. Therefore, DR4-CFP/YFP PC9 reporter cells along with FRET technology can be used as a tool for anti-cancer drug screening to identify compounds that are capable of activating TRAIL pathways. Biotechnol. Bioeng. 2013; 110: 1396-1404. © 2012 Wiley Periodicals, Inc.
Keywords: immunohistochemistry; controlled study; protein expression; human cell; flow cytometry; protein localization; cell death; apoptosis; fluorescence; molecular dynamics; lung cancer; cell line, tumor; luminescent proteins; drug delivery systems; recombinant fusion proteins; cell culture; cancer cell; death receptor 4; cell membrane; fluorescence resonance energy transfer; cell membranes; energy transfer; fluorescence microscopy; microscopy, fluorescence; cell activation; cell selection; chemical activation; yellow fluorescent protein; receptors, tnf-related apoptosis-inducing ligand; cyan fluorescent protein; activation analysis; epifluorescence microscopy; dr4; fret; reporter cell line; trail receptors; photobleaching; compatible expressions; epi-fluorescence microscopies; yellow fluorescence proteins
Journal Title: Biotechnology and Bioengineering
Volume: 110
Issue: 5
ISSN: 0006-3592
Publisher: Wiley Blackwell  
Date Published: 2013-05-01
Start Page: 1396
End Page: 1404
Language: English
PROVIDER: scopus
PUBMED: 23239419
DOI: 10.1002/bit.24804
PMCID: PMC5540232
DOI/URL:
Notes: --- - "Export Date: 1 May 2013" - "CODEN: BIBIA" - ":doi 10.1002/bit.24804" - "Source: Scopus"
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  1. Xuejun Jiang
    121 Jiang