Pharmacoproteomic study of the natural product Ebenfuran III in DU-145 prostate cancer cells: the quantitative and temporal interrogation of chemically induced cell death at the protein level
Pharmacoproteomic study of the natural product Ebenfuran III in DU-145 prostate cancer cells: the quantitative and temporal interrogation of chemically induced cell death at the protein level
A naturally occurring benzofuran derivative, Ebenfuran III (Eb III), was investigated for its antiproliferative effects using the DU-145 prostate cell line. Eb III was isolated from Onobrychis ebenoides of the Leguminosae family, a plant endemic in Central and Southern Greece. We have previously reported that Eb III exerts significant cytotoxic effects on certain cancer cell lines. This effect is thought to occur via the isoprenyl moiety at the C-5 position of the molecule. The study aim was to gain a deeper understanding of the pharmacological effect of Eb III on DU-145 cell death at the translational level using a relative quantitative and temporal proteomics approach. Proteins extracted from the cell pellets were subjected to solution phase trypsin proteolysis followed by iTRAQ-labeling. The labeled tryptic peptide extracts were then fractionated using strong cation exchange chromatography and the fractions were analyzed by nanoflow reverse phase ultraperformance liquid chromatography–nanoelectrospray ionization-tandem mass spectrometry analysis using a hybrid QqTOF platform. Using this approach, we compared the expression levels of 1360 proteins analyzed at ?1% global protein false discovery rate (FDR), commonly present in untreated (control, vehicle only) and Eb III-treated cells at the different exposure time points. Through the iterative use of Ingenuity Pathway Analysis with hierarchical clustering of protein expression patterns, followed by bibliographic research, the temporal regulation of the Calpain-1, ERK2, PAR-4, RAB-7, and Bap31 proteins were identified as potential nodes of multipathway convergence to Eb III induced DU-145 cell death. These proteins were further verified with Western blot analysis. This gel-free, quantitative 2DLC–MS/MS proteomics method effectively captured novel modulated proteins in the DU-145 cell line as a response to Eb III treatment. This approach also provided greater insight to the multifocal and combinatorial signaling pathways implicated in Eb III-induced cell death.
ebenfuran III, DU-145 prostate cancer cells
1591-1603
Roumeliotis, Theodoros
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Halabalaki, Maria
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Alexi, Xanthippi
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Ankrett, Dyan N.
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Giannopoulou, Eugenia G.
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Skaltsounis, Alexios-Leandros
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Sayan, B.S.
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Alexis, Michael N.
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Townsend, Paul A.
a2680443-664e-46d0-b4dd-97456ba810db
Garbis, Spiros D.
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19 February 2013
Roumeliotis, Theodoros
f1284c98-b5eb-483e-9416-594c678e62fd
Halabalaki, Maria
b1999a95-61ed-4ed7-b226-8d15221e4b3d
Alexi, Xanthippi
0168af76-5fc8-4e2a-b031-e9f10b86b712
Ankrett, Dyan N.
22d8eb6d-70db-4b47-9587-c4d048cd34b7
Giannopoulou, Eugenia G.
db208413-12b1-42dc-b545-9b5c0a66c50d
Skaltsounis, Alexios-Leandros
5135c955-f627-4f99-ac1b-08f1858f7ff7
Sayan, B.S.
ab62c915-3d79-45cb-a900-22ed58a07dfb
Alexis, Michael N.
6fca996b-f011-4ddf-aac7-0d2a185648d3
Townsend, Paul A.
a2680443-664e-46d0-b4dd-97456ba810db
Garbis, Spiros D.
7067fd19-50c9-4d42-9611-f370289470bd
Roumeliotis, Theodoros, Halabalaki, Maria, Alexi, Xanthippi, Ankrett, Dyan N., Giannopoulou, Eugenia G., Skaltsounis, Alexios-Leandros, Sayan, B.S., Alexis, Michael N., Townsend, Paul A. and Garbis, Spiros D.
(2013)
Pharmacoproteomic study of the natural product Ebenfuran III in DU-145 prostate cancer cells: the quantitative and temporal interrogation of chemically induced cell death at the protein level.
Journal of Proteome Research, 12 (4), .
(doi:10.1021/pr300968q).
(PMID:23418717)
Abstract
A naturally occurring benzofuran derivative, Ebenfuran III (Eb III), was investigated for its antiproliferative effects using the DU-145 prostate cell line. Eb III was isolated from Onobrychis ebenoides of the Leguminosae family, a plant endemic in Central and Southern Greece. We have previously reported that Eb III exerts significant cytotoxic effects on certain cancer cell lines. This effect is thought to occur via the isoprenyl moiety at the C-5 position of the molecule. The study aim was to gain a deeper understanding of the pharmacological effect of Eb III on DU-145 cell death at the translational level using a relative quantitative and temporal proteomics approach. Proteins extracted from the cell pellets were subjected to solution phase trypsin proteolysis followed by iTRAQ-labeling. The labeled tryptic peptide extracts were then fractionated using strong cation exchange chromatography and the fractions were analyzed by nanoflow reverse phase ultraperformance liquid chromatography–nanoelectrospray ionization-tandem mass spectrometry analysis using a hybrid QqTOF platform. Using this approach, we compared the expression levels of 1360 proteins analyzed at ?1% global protein false discovery rate (FDR), commonly present in untreated (control, vehicle only) and Eb III-treated cells at the different exposure time points. Through the iterative use of Ingenuity Pathway Analysis with hierarchical clustering of protein expression patterns, followed by bibliographic research, the temporal regulation of the Calpain-1, ERK2, PAR-4, RAB-7, and Bap31 proteins were identified as potential nodes of multipathway convergence to Eb III induced DU-145 cell death. These proteins were further verified with Western blot analysis. This gel-free, quantitative 2DLC–MS/MS proteomics method effectively captured novel modulated proteins in the DU-145 cell line as a response to Eb III treatment. This approach also provided greater insight to the multifocal and combinatorial signaling pathways implicated in Eb III-induced cell death.
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Published date: 19 February 2013
Keywords:
ebenfuran III, DU-145 prostate cancer cells
Organisations:
Cancer Sciences, Mechatronics
Identifiers
Local EPrints ID: 363123
URI: http://eprints.soton.ac.uk/id/eprint/363123
ISSN: 1535-3893
PURE UUID: 851267f9-2248-4b81-8815-2bd042773862
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Date deposited: 20 Mar 2014 14:42
Last modified: 14 Mar 2024 16:18
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Contributors
Author:
Theodoros Roumeliotis
Author:
Maria Halabalaki
Author:
Xanthippi Alexi
Author:
Dyan N. Ankrett
Author:
Eugenia G. Giannopoulou
Author:
Alexios-Leandros Skaltsounis
Author:
B.S. Sayan
Author:
Michael N. Alexis
Author:
Paul A. Townsend
Author:
Spiros D. Garbis
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