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Myb and Ets proteins cooperate to transactivate an early myeloid gene
1Department of Experimental Oncology, St. Jude Children's Research Hospital, Memphis, Tennessee 38101, USA.
Abstract:
The earliest progenitor cell committed to the granulocyte/monocyte developmental pathway can be identified by the appearance of a 150-kDa glycoprotein on the cell surface (CD13/aminopeptidase N (CD13/APN), EC 3.4.11.2). A 455-base pair genomic fragment from the CD13/APN gene containing a Myb consensus-binding site as well as three potential Ets-binding sites was found to regulate tissue-appropriate expression of reporter genes in hematopoietic cell lines. Transactivation experiments with plasmids expressing either a full-length or truncated Myb protein and the full-length Ets-1 or Ets-2 protein demonstrated that these proteins cooperate to positively regulate CD13/APN gene expression. This cooperation is synergistic, as levels of transcriptional activity produced by Myb and Ets in combination were higher than those expected from a purely additive effect. Mutation of the Myb consensus-binding site completely abolished CD13/APN promoter activity in myeloid cells. Introduction of a dominant interfering Myb allele disrupted the ability of endogenous c-Myb in myeloid cells to transactivate the CD13/APN construct. Other myeloid cell-expressed Ets family members (PU.1, Fli-1, and Elf-1) failed to produce a cooperative transactivating effect when combined with the Myb expression construct. These data contrast with previous studies indicating that full-length c-Myb is unable to positively cooperate with Ets proteins in the regulation of myeloid genes. Because intact c-Myb and Ets-2 proteins, both endogenously expressed in myeloid cells, act synergistically to transactivate the CD13/APN promoter, this gene may represent a physiological target for dissection of the roles of these transcription factors in normal and malignant myelopoiesis.
Insights
Transcription factors Myb and Ets-2 synergistically regulate CD13/aminopeptidase N (CD13/APN) gene expression in myeloid cells. This finding offers insights into myelopoiesis and potential therapeutic targets in myeloid malignancies.
Area of Science:
- Molecular Biology
- Hematopoiesis
- Gene Regulation
Background:
- CD13/aminopeptidase N (CD13/APN) is a cell surface glycoprotein identifying early myeloid progenitor cells.
- Understanding the regulation of CD13/APN is crucial for insights into granulocyte/monocyte development.
Purpose of the Study:
- To investigate the roles of transcription factors Myb and Ets in regulating CD13/APN gene expression.
- To elucidate the cooperative mechanisms between Myb and Ets proteins in myeloid cells.
Main Methods:
- Analysis of a genomic fragment of the CD13/APN gene containing transcription factor binding sites.
- Reporter gene assays in hematopoietic cell lines.
- Transactivation experiments using Myb and Ets expression constructs.
- Site-directed mutagenesis of the Myb consensus-binding site.
- Dominant interfering allele experiments.
Main Results:
- A genomic fragment of the CD13/APN gene with Myb and Ets binding sites regulates reporter gene expression in hematopoietic cells.
- Cooperative and synergistic transactivation of the CD13/APN promoter by Myb and Ets-1/Ets-2 proteins.
- Mutation of the Myb-binding site abolished promoter activity; dominant interfering Myb disrupted transactivation.
- Other Ets family members (PU.1, Fli-1, Elf-1) did not show cooperative effects with Myb.
Conclusions:
- Intact c-Myb and Ets-2 proteins synergistically transactivate the CD13/APN promoter in myeloid cells.
- The CD13/APN gene is a potential physiological target for studying transcription factor roles in myelopoiesis.
- This interaction provides a model for dissecting transcription factor functions in normal and malignant myelopoiesis.