Activation of gene expression by small molecule transcription factors
- 11 April 2000
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 97 (8) , 3930-3935
- https://doi.org/10.1073/pnas.97.8.3930
Abstract
Eukaryotic transcriptional activators are minimally comprised of a DNA binding domain and a separable activation domain; most activator proteins also bear a dimerization module. We have replaced these protein modules with synthetic counterparts to create artificial transcription factors. One of these, at 4.2 kDa, mediates high levels of DNA site-specific transcriptional activation in vitro. This molecule contains a sequence-specific DNA binding polyamide in place of the typical DNA binding region and a nonprotein linker in place of the usual dimerization peptide. Thus our activating region, a designed peptide, functions outside of the archetypal protein context, as long as it is tethered to DNA. Because synthetic polyamides can, in principle, be designed to recognize any specific sequence, these results represent a key step toward the design of small molecules that can up-regulate any specified gene.Keywords
This publication has 29 references indexed in Scilit:
- Regulation of gene expression by small moleculesNature, 1997
- Transcriptional activation by recruitmentNature, 1997
- Dimeric ligands define a role for transcriptional activation domains in reinitiationNature, 1996
- Synthesis of small‐medium ring thioanhydridesJournal of Heterocyclic Chemistry, 1995
- Initiation by Yeast RNA Polymerase II at the Adenoviral Major Late Promoter in VitroScience, 1989
- Converting a eukaryotic transcriptional inhibitor into an activatorCell, 1988
- GAL4-VP16 is an unusually potent transcriptional activatorNature, 1988
- Negative effect of the transcriptional activator GAL4Nature, 1988
- Transcription in yeast activated by a putative amphipathic α helix linked to a DNA binding unitNature, 1987
- A eukaryotic transcriptional activator bearing the DNA specificity of a prokaryotic repressorCell, 1985