ATP-binding cassette transporters modulate both coelenterazine- and D-luciferin-based bioluminescence imaging Journal Article


Authors: Huang, R.; Vider, J.; Serganova, I.; Blasberg, R. G.
Article Title: ATP-binding cassette transporters modulate both coelenterazine- and D-luciferin-based bioluminescence imaging
Abstract: Bioluminescence imaging (BLI) of luciferase reporters provides a cost-effective and sensitive means to image biological processes. However, transport of luciferase substrates across the cell membrane does affect BLI readout intensity from intact living cells. To investigate the effect of ATP-binding cassette (ABC) transporters on BLI readout, we generated click beetle (cLuc), firefly (fLuc), Renilla (rLuc), and Gaussia (gLuc) luciferase HEK-293 reporter cells that overexpressed different ABC transporters (ABCB1, ABCC1, and ABCG2). In vitro studies showed a significant BLI intensity decrease in intact cells compared to cell lysates, when ABCG2 was overexpressed in HEK-293/cLuc, fLuc, and rLuc cells. Selective ABC transporter inhibitors were also applied. Inhibition of ABCG2 activity increased the BLI intensity more than two-fold in HEK-293/cLuc, fLuc, and rLuc cells; inhibition of ABCB1 elevated the BLI intensity two-fold only in HEK-293/rLuc cells. BLI of xenografts derived from HEK-293/ABC transporter/luciferase reporter cells confirmed the results of inhibitor treatment in vivo. These findings demonstrate that coelenterazine-based rLuc-BLI intensity can be modulated by ABCB1 and ABCG2. ABCG2 modulates D-luciferin-based BLI in a luciferase type-independent manner. Little ABC transporter effect on gLuc-BLI intensity is observed because a large fraction of gLuc is secreted. The expression level of ABC transporters is one key factor affecting BLI intensity, and this may be particularly important in luciferase-based applications in stem cell research. © 2011 Decker Publishing.
Keywords: cytology; atp-binding cassette transporters; abc transporter; cell membranes; stem cells; in-vivo; in-vitro; bioluminescence; phosphorescence; intact cells; bioluminescence imaging; biological process; cell lysates; expression levels; hek-293; key factors; living cell; stem cell research
Journal Title: Molecular Imaging
Volume: 10
Issue: 3
ISSN: 1535-3508
Publisher: Sage Publications, Inc.  
Date Published: 2011-06-01
Start Page: 215
End Page: 226
Language: English
DOI: 10.2310/7290.2010.00045
PROVIDER: scopus
PUBMED: 21496450
PMCID: PMC4052835
DOI/URL:
Notes: --- - "Export Date: 23 June 2011" - "Source: Scopus"
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  1. Ronald G Blasberg
    272 Blasberg
  2. Ruimin Huang
    30 Huang
  3. Jelena Vider
    31 Vider