Expression of the rat growth‐hormone gene is under the influence of a cell‐type‐specific silencer element
- 1 April 1993
- journal article
- Published by Wiley in European Journal of Biochemistry
- Vol. 213 (1), 399-404
- https://doi.org/10.1111/j.1432-1033.1993.tb17774.x
Abstract
We have previously shown that a cell-type-specific negative-regulatory element, or silencer, acts to specifically restrict rat-growth-hormone(rGH)-promoter activity to pituitary cells. Here we report a detailed characterization of this element. The activity of the silencer is dependent on its position relative to the promoter. The negative regulatory effect can be diminished by cotransfection with a high-copy-number, silencer-containing competitor plasmid, suggesting that the function of the element is mediated by specific binding of a trans-acting negative-regulatory factor. The minimal region required for silencer function is contained between positions -309 and -266 relative to the start of the rGH mRNA. The specific interaction of a nuclear protein from non-pituitary cells with this rGH DNA segment was shown by DNaseI as well as dimethylsulfate methylation-interference footprinting. A detailed examination of the DNA-binding site for that protein clearly suggest that it belongs to the NF1 family of transcription factors.This publication has 29 references indexed in Scilit:
- Functional isoforms of Pit-1 generated by alternative messenger RNA splicingMolecular Endocrinology, 1992
- The myoD Gene Family: Nodal Point During Specification of the Muscle Cell LineageScience, 1991
- Growth hormone gene regulation: a paradigm for cell-type-specific gene activationTrends in Genetics, 1990
- Modular structure of a chicken lysozyme silencer: Involvement of an unusual thyroid hormone receptor binding siteCell, 1990
- A tissue-specific transcription factor containing a homeodomain specifies a pituitary phenotypeCell, 1988
- Two Mechanisms for the Extinction of Gene Expression in Hybrid CellsScience, 1988
- A simple phase-extraction assay for chloramphenicol acyltransferase activityGene, 1988
- A family of human CCAAT-box-binding proteins active in transcription and DNA replication: cloning and expression of multiple cDNAsNature, 1988
- Characterization of a “silencer” in yeast: A DNA sequence with properties opposite to those of a transcriptional enhancerCell, 1985
- Competition for cellular factors that activate metallothionein gene transcriptionNature, 1984