A mechanism for synergistic activation of a mammalian gene by GAL4 derivatives
- 1 May 1990
- journal article
- Published by Springer Nature in Nature
- Vol. 345 (6273), 361-364
- https://doi.org/10.1038/345361a0
Abstract
In prokaryotes and eukaryotes many gene activators work synergistically. For example, two dimers of lambda repressor interact to promote binding of these proteins to DNA, a reaction that is crucial at the repressor concentrations found in lysogens. In this case one of the bound dimers activates transcription, evidently by touching RNA polymerase. In another example, the yeast transcriptional activator GAL4, which can stimulate transcription in many eukaryotes, binds to multiple sites on DNA to activate transcription synergistically; the presence of two such sites can elicit a level of transcription more than twice that found with a single site. In this paper we show that synergistic activation by each of several GAL4 derivatives involves a mechanism different from that illustrated by the lambda repressor: multiple activator molecules can work synergistically under conditions in which their binding sites on DNA are saturated. The accompanying paper shows that under similar conditions of activator excess, GAL4 derivatives work synergistically with a heterologous mammalian gene activator. These results support the idea that eukaryotic activators can cooperate not by directly interacting but by simultaneously touching some component(s) of the transcriptional machinery.Keywords
This publication has 16 references indexed in Scilit:
- How different eukaryotic transcriptional activators can cooperate promiscuouslyNature, 1990
- An amino-terminal fragment of GAL4 binds DNA as a dimerJournal of Molecular Biology, 1989
- Transcription activation by the adenovirus E1a proteinNature, 1989
- GAL4-VP16 is an unusually potent transcriptional activatorNature, 1988
- The HeLa cell protein TEF-1 binds specifically and cooperatively to two SV40 enhancer motifs of unrelated sequenceCell, 1988
- GAL4 derivatives function alone and synergistically with mammalian activators in vitroCell, 1988
- Transcription in yeast activated by a putative amphipathic α helix linked to a DNA binding unitNature, 1987
- Deletion analysis of GAL4 defines two transcriptional activating segmentsCell, 1987
- Repressor structure and the mechanism of positive controlCell, 1983
- Interactions between DNA-bound repressors govern regulation by the λ phage repressorProceedings of the National Academy of Sciences, 1979