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Methods to Discover Alternative Promoter Usage and Transcriptional Regulation of Murine Bcrp1
Published on: May 27, 2016
An alternative, human SRC promoter and its regulation by hepatic nuclear factor-1alpha
K Bonham1, S A Ritchie, S M Dehm
1Cancer Research Unit, Health Research Division, Saskatchewan Cancer Agency and the Division of Oncology, University of Saskatchewan, Saskatoon, Saskatchewan, S7N 4H4, Canada. kbonham@scf.sk.ca
Abstract:
The SRC gene encodes the proto-oncogene pp60(c-)(src), a tyrosine kinase implicated in numerous signal transduction pathways. In addition, the SRC gene is differentially expressed, developmentally regulated, and frequently overexpressed in human neoplasia. However, the mechanisms regulating its expression have not been completely explored. Here we describe the isolation of a new distal SRC promoter and associated exon, designated 1alpha, which we mapped to a position 1.0 kilobase upstream of the previously described SRC1A housekeeping promoter. Differential use of these promoters and their associated exons coupled with subsequent splicing to a common downstream exon results in c-Src transcripts with different 5' ends but identical coding regions. Promoter analysis following transient transfections into HepG2 cells mapped the minimal 1alpha promoter to a region 145 bp upstream of the major transcription start site. This region contained a consensus binding site for hepatic nuclear factor-1 (HNF-1), a liver-enriched transcription factor implicated in the regulation of a number of genes in liver, kidney, stomach, intestine, and pancreas. Subsequent mobility shift assays confirmed that HNF-1alpha isoform was the predominant factor interacting with this region of the promoter. Mutation of the HNF-1 site resulted in a dramatic reduction in SRC promoter activity. Cotransfection studies demonstrated the promoter could be strongly transactivated by the HNF-1alpha isoform but not by the related HNF-1beta factor. Consistent with these results, we demonstrated that transcripts originating from the SRC1alpha promoter display a tissue restricted pattern of expression with highest levels present in stomach, kidney, and pancreas. These results indicate that SRC transcriptional regulation is much more complex than previously realized and implicates HNF-1 in both the tissue-specific regulation of the SRC gene in normal tissues and the overexpression of c-Src in certain human cancers.
Insights
Researchers discovered a new SRC gene promoter, 1alpha, regulated by hepatic nuclear factor-1 (HNF-1). This finding reveals complex SRC gene regulation and its role in cancer.
Area of Science:
- Molecular Biology
- Genetics
- Cancer Research
Background:
- The SRC gene encodes pp60(c-)(src), a tyrosine kinase vital for cell signaling.
- SRC gene expression is complex, developmentally regulated, and often overexpressed in cancers.
- Mechanisms controlling SRC gene expression remain incompletely understood.
Purpose of the Study:
- To identify and characterize novel regulatory elements of the SRC gene.
- To elucidate the role of transcription factors in SRC gene expression.
- To investigate the implications of SRC gene regulation in human neoplasia.
Main Methods:
- Isolation and mapping of a new distal SRC promoter (1alpha).
- Transient transfection assays in HepG2 cells to map promoter activity.
- Mobility shift assays and cotransfection studies to identify and characterize transcription factor interactions.
- Analysis of SRC transcript expression patterns in various tissues.
Main Results:
- A novel distal SRC promoter, 1alpha, was identified 1.0 kb upstream of the SRC1A promoter.
- The 1alpha promoter contains a binding site for hepatic nuclear factor-1 (HNF-1), primarily HNF-1alpha.
- HNF-1alpha significantly transactivates the 1alpha promoter, while HNF-1beta does not.
- Mutation of the HNF-1 binding site drastically reduces SRC promoter activity.
- SRC transcripts from the 1alpha promoter show restricted expression in stomach, kidney, and pancreas.
Conclusions:
- SRC gene transcriptional regulation is more intricate than previously known.
- HNF-1 plays a crucial role in the tissue-specific expression of the SRC gene.
- Dysregulation of HNF-1 mediated SRC expression may contribute to c-Src overexpression in certain cancers.
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