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An integrative genomic approach in oesophageal cells identifies TRB3 as a bile acid responsive gene, downregulated in Barrett's oesophagus, which regulates NF-kappaB activation and cytokine levels.
- Source :
-
Carcinogenesis [Carcinogenesis] 2010 May; Vol. 31 (5), pp. 936-45. Date of Electronic Publication: 2010 Feb 05. - Publication Year :
- 2010
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Abstract
- Reflux of gastroduodenal contents and consequent inflammatory responses are associated with the development of Barrett's oesophagus (BO) and the promotion of oesophageal adenocarcinoma (OAC). Deregulation of inflammatory processes is a hallmark of oesophageal cancer. In this study, we aimed to investigate (i) the transcriptional responses to deoxycholic acid (DCA) in cell lines representative of either end of the oesophageal cancer sequence, (ii) the expression of DCA-regulated genes in data charting oesophageal carcinogenesis and (iii) the impact of these genes on oesophageal inflammatory signalling. Gene expression microarrays were utilized to demonstrate differential transcriptional responses between squamous (HET-1A) and adenomatous (SKGT4) cell lines exposed to DCA. Differential basal and DCA-inducible expression of cytokines such as interleukin (IL) 8 was observed between both cell types. A cohort of DCA-regulated genes specific to each cell type was identified in microarray experimentation and subsequently validated. Cell type-specific genes included TRB3, CXCL14, GDF15 and LIF in HET-1A cells, with COX2-, ESM1-, URHF1- and IL1alpha-and IL1beta-specific expression in SKGT4 cells. Over 30% of the genes altered in BO and OAC were shown to be regulated by DCA utilizing an integrative genomic approach. One such gene, tribbles-homology-3 (TRB3) was induced specifically in HET-1A cells, absent in SKGT4 cells and decreased in BO samples in silico and in vivo. Inhibition and re-introduction of TRB3 in HET-1A and SKGT4 cells, respectively, demonstrated the ability of TRB3 to regulate inflammatory signalling through nuclear factor-kappaB. This study identifies mechanisms through which bile acids such as DCA, in conjunction with the loss of key signalling molecules, could regulate oesophageal metaplasticity.
- Subjects :
- Barrett Esophagus genetics
Barrett Esophagus pathology
Cell Cycle Proteins physiology
Cell Line, Tumor
Down-Regulation
Esophagus metabolism
Gene Expression Profiling
Gene Expression Regulation drug effects
Genomics
Humans
Protein Serine-Threonine Kinases physiology
Repressor Proteins physiology
Signal Transduction
Barrett Esophagus etiology
Cell Cycle Proteins genetics
Deoxycholic Acid pharmacology
Esophagus pathology
Interleukin-8 analysis
NF-kappa B metabolism
Protein Serine-Threonine Kinases genetics
Repressor Proteins genetics
Response Elements physiology
Subjects
Details
- Language :
- English
- ISSN :
- 1460-2180
- Volume :
- 31
- Issue :
- 5
- Database :
- MEDLINE
- Journal :
- Carcinogenesis
- Publication Type :
- Academic Journal
- Accession number :
- 20139130
- Full Text :
- https://doi.org/10.1093/carcin/bgq036