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An abundant transcript induced in differentiating human endothelial cells encodes a polypeptide with structural
1Laboratory of Molecular Biology, Jerome H. Holland Laboratory for the Biomedical Sciences, American Red Cross, Rockville, Maryland 20855.
Abstract:
The tumor promoter phorbol 12-myristate 13-acetate (PMA) inhibits the growth of human endothelial cells and induces differentiation into capillary-like, tubular structures. We have isolated cDNA clones induced by PMA in the presence of cycloheximide and report the characterization of a novel immediate-early cDNA clone, termed edg-1, from human endothelial cells. The 3-kilobase edg-1 transcript is rapidly induced when endothelial cells are treated with PMA and superinduced in the presence of cycloheximide. While superinduction is due, at least in part, to the stabilization of the edg-1 transcript, nuclear run-on analysis demonstrates that the transcription of edg-1 is stimulated by PMA. Although the edg-1 transcript is very abundant in endothelial cells, transcripts related to human edg-1 are also detected at lower levels in vascular smooth muscle cells, fibroblasts, melanocytes, and cells of epithelioid origin. The deduced polypeptide sequence of edg-1 contains seven transmembrane domains with significant structural similarities to G-protein-coupled receptors (GPRs). Although the identity of the ligand for edg-1 is presently unknown, the structure of edg-1 polypeptide strongly implies that the edg-1 translation product is an inducible endothelial cell GPR. Since GPRs are involved in diverse biological processes such as signal transduction, cell proliferation, and differentiation, the characterization of human edg-1 as a highly inducible and abundant endothelial cell GPR suggest that it may be involved in the processes that regulate the differentiation of endothelial cells.
Insights
Phorbol 12-myristate 13-acetate (PMA) induces a novel gene, edg-1, in human endothelial cells. This gene encodes a G-protein-coupled receptor potentially involved in cell differentiation.
Area of Science:
- Molecular Biology
- Cell Biology
- Biochemistry
Background:
- Phorbol 12-myristate 13-acetate (PMA) is a tumor promoter that affects endothelial cell growth and differentiation.
- Endothelial cells form capillary-like structures upon PMA treatment.
- Understanding molecular mechanisms of endothelial cell differentiation is crucial.
Purpose of the Study:
- To identify and characterize novel genes induced by PMA in human endothelial cells.
- To investigate the regulation and function of the identified gene, edg-1.
- To explore the potential role of edg-1 in endothelial cell differentiation.
Main Methods:
- Isolation and characterization of cDNA clones induced by PMA and cycloheximide.
- Analysis of edg-1 transcript levels using Northern blotting and nuclear run-on assays.
- Deduced polypeptide sequence analysis to predict protein structure and function.
Main Results:
- A novel immediate-early cDNA clone, edg-1, was isolated and characterized.
- The edg-1 transcript is rapidly induced and superinduced by PMA, with both transcriptional and post-transcriptional regulation.
- The edg-1 polypeptide sequence suggests it is a G-protein-coupled receptor (GPR) with seven transmembrane domains.
- edg-1 transcripts are abundant in endothelial cells and detected in other cell types.
Conclusions:
- edg-1 is a highly inducible endothelial cell G-protein-coupled receptor.
- The structure of edg-1 suggests a role in signal transduction pathways.
- edg-1 may play a significant role in regulating endothelial cell differentiation.