Related Experiment Videos
Identification of ErbB3-stimulated genes using modified representational difference analysis
C F Edman1, S A Prigent, A Schipper
1Cancer Center, University of California, San Diego School of Medicine, La Jolla, CA 92093-0684, U.S.A.
Abstract:
The epidermal growth factor receptor (EGFR) family of tyrosine kinases is involved in the growth of normal and tumour cells. The specific contribution of each of the four family members to these processes remains unclear. In the present study we have used a PCR-based subtractive approach to identify differences in messages induced in response to activation of ErbB3 and EGFR. The approach described is a modification of the representational difference analysis technique adapted for analysis of cDNA, which we have modified to permit identification of differential gene expression using as little as 20 microg of total RNA as the starting material. The mRNA obtained from EGF-stimulated NIH-3T3 cells expressing chimaeric EGFR-ErbB3 receptors provided the tester amplicons (small PCR-amplified fragments) which were subtracted against driver amplicons derived from unstimulated NIH-3T3 cells expressing the EGFR-ErbB3 chimaera or EGF-stimulated NIH-3T3 cells overexpressing the EGFR. A total of 22 different clones were isolated, 90% of which showed increased expression in the tester amplicons. Six of these, corresponding to known DNA sequences, were selected for further Northern blot analysis against total RNA prepared from the starting cell lines. Of these, the gene encoding the protein dlk (or a closely related protein, Pref-1) was identified as being regulated by ErbB3 but not by the EGFR. Other genes appeared to be elevated by both ErbB3 and EGFR, including those encoding c-jun, Ret finger protein (RFP), neuroleukin and amyloid protein precursor. One gene product, TIS11, was identified as being regulated by EGFR but not by ErbB3.
Insights
This study identifies genes regulated by ErbB3 and epidermal growth factor receptor (EGFR) signaling in cells. It found dlk is regulated by ErbB3, TIS11 by EGFR, and others by both, clarifying their distinct roles in cell growth.
Area of Science:
- Molecular biology
- Cell signaling
- Cancer research
Background:
- The epidermal growth factor receptor (EGFR) family, including ErbB3, plays a role in normal and tumor cell growth.
- The specific contributions of individual EGFR family members to these processes are not fully understood.
Purpose of the Study:
- To identify differential gene expression in response to ErbB3 and EGFR activation.
- To distinguish signaling pathways mediated by specific EGFR family members.
Main Methods:
- Utilized a modified representational difference analysis (RDA) technique adapted for cDNA.
- Employed PCR-based subtractive hybridization to compare gene expression from stimulated and unstimulated cells.
- Used as little as 20 μg of total RNA for differential gene expression analysis.
Main Results:
- Identified 22 distinct clones, with 90% showing increased expression in stimulated cells.
- Discovered the gene encoding dlk (or Pref-1) is regulated by ErbB3 but not EGFR.
- Found TIS11 is regulated by EGFR but not ErbB3.
- Observed genes like c-jun, RFP, neuroleukin, and amyloid precursor protein are upregulated by both ErbB3 and EGFR.
Conclusions:
- ErbB3 and EGFR activate distinct sets of genes involved in cell growth.
- The study provides insights into the specific roles of ErbB3 and EGFR in cellular signaling pathways.
- The developed method allows for efficient identification of differentially expressed genes from limited RNA samples.