Cell-specific expression of the prolactin gene in transgenic mice is controlled by synergistic interactions between promoter and enhancer elements.
Open Access
- 1 July 1989
- journal article
- Published by Cold Spring Harbor Laboratory in Genes & Development
- Vol. 3 (7) , 959-972
- https://doi.org/10.1101/gad.3.7.959
Abstract
Prolactin gene expression is restricted to the lactotrophic and somatomammotrophic cells of the anterior pituitary. In transgenic mice, a fusion gene consisting of 3 kb of prolactin 5'-flanking region fused to a firefly luciferase or human growth hormone (hGH) reporter gene is expressed at high levels with the strict tissue and cell-type specificity that is characteristic of the endogenous prolactin gene. High levels of expression require two cis-acting regions: a distal enhancer (-1.8 to -1.5 kb) and a proximal region (-422 to +33 bp). Each of these regions alone can direct low levels of fusion gene expression to prolactin-producing cell types in transgenic mice, but a synergistic interaction between these regions is necessary for high levels of expression. The ontogeny of the prolactin transgene expression closely follows the appearance of high levels of a POU homeo-domain transcription factor, Pit-1, that has been shown previously to bind structurally related sequences in both the distal enhancer and proximal regions and to activate the expression of the prolactin gene in vitro. Unexpectedly, transgenes containing the distal enhancer removed from its normal context are expressed in both the prolactin-producing lactotrophs and the thyroid-stimulating hormone (TSH)-producing thyrotrophs, thereby suggesting that sequences flanking this enhancer are necessary to restrict expression to the correct cell type within the pituitary. These data indicate that distinct processes of gene activation and restriction are necessary for the fidelity of cell-type-specific expression within an organ.Keywords
This publication has 39 references indexed in Scilit:
- Accurate measurements of dynamics and reproducibility in small genetic networksMolecular Systems Biology, 2013
- A tissue-specific transcription factor containing a homeodomain specifies a pituitary phenotypeCell, 1988
- The pituitary-specific transcription factor GHF-1 is a homeobox-containing proteinCell, 1988
- Neuronal Expression of chimeric genes in transgenic miceNeuron, 1988
- Identification by Cell Fusion of Gene Sequences That Interact with Positive Trans-Acting FactorsScience, 1987
- Improved fixation and cobalt-glucose oxidase-diaminobenzidine intensification for immunohistochemical demonstration of corticotropin-releasing factor in rat brain.Journal of Histochemistry & Cytochemistry, 1987
- Two Different cis -Active Elements Transfer the Transcriptional Effects of Both EGF and Phorbol EstersScience, 1986
- Ultrastructural immunocytochemistry of somatotrophs and mammotrophs in embryos of the dwarf mutant mouseThe Anatomical Record, 1986
- Organization of Ovine Corticotropin-Releasing Factor Immunoreactive Cells and Fibers in the Rat Brain: An Immunohistochemical StudyNeuroendocrinology, 1983
- An immunohistochemical study on the cytogenesis of adenohypophysial cells in fetal ratsDevelopmental Biology, 1979