Groucho/transducin-like Enhancer-of-split (TLE)-dependent and -independent transcriptional regulation by Runx3
- 9 May 2006
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 103 (19) , 7384-7389
- https://doi.org/10.1073/pnas.0602470103
Abstract
Regulation of gene expression by tissue-specific transcription factors involves both turning on and turning off transcription of target genes. Runx3, a runt-domain transcription factor, regulates cell-intrinsic functions by activating and repressing gene expression in sensory neurons, dendritic cells (DC), and T cells. To investigate the mechanism of Runx3-mediated repression in an in vivo context, we generated mice expressing a mutant Runx3 lacking the C-terminal VWRPY, a motif required for Runx3 interaction with the corepressor Groucho/transducin-like Enhancer-of-split (TLE). In contrast with Runx3(-/-) mice, which displayed ataxia due to the death of dorsal root ganglia TrkC neurons, Runx3(VWRPY-/-) mice were not ataxic and had intact dorsal root ganglia neurons, indicating that ability of Runx3 to tether Groucho/TLE is not essential for neurogenesis. In the DC compartment, the mutant protein Runx3(VWRPY-) promoted normally developed skin Langerhans cells but failed to restrain DC spontaneous maturation, indicating that this latter process involves Runx3-mediated repression through recruitment of Groucho/TLE. Moreover, in CD8(+) thymocytes, Runx3(VWRPY-) up-regulated alphaE/CD103-like WT Runx3, whereas unlike wild type, it failed to repress alphaE/CD103 in CD8(+) splenocytes. Thus, in CD8-lineage T cells, Runx3 regulates alphaE/CD103 in opposing regulatory modes and recruits Groucho/TLE to facilitate the transition from activation to repression. Runx3(VWRPY-) also failed to mediate the epigenetic silencing of CD4 gene in CD8(+) T cells, but normally regulated other pan-CD8(+) T cell genes. These data provide evidence for the requirement of Groucho/TLE for Runx3-mediated epigenetic silencing of CD4 and pertain to the mechanism through which other Runx3-regulated genes are epigenetically silenced.Keywords
This publication has 49 references indexed in Scilit:
- Toward the Neural Basis of Processing Structure in MusicAnnals of the New York Academy of Sciences, 2003
- Positive and Negative Selection of T CellsAnnual Review of Immunology, 2003
- Dendritic Cell Function in Vivo during the Steady State: A Role in Peripheral ToleranceAnnals of the New York Academy of Sciences, 2003
- E-cadherin-mediated interactions of thymic epithelial cells with CD103+ thymocytes lead to enhanced thymocyte cell proliferationJournal of Cell Science, 2002
- Differential Requirements for Runx Proteins in CD4 Repression and Epigenetic Silencing during T Lymphocyte DevelopmentCell, 2002
- Reciprocal regulation of CD4/CD8 expression by SWI/SNF-like BAF complexesNature, 2002
- T-cell development and the CD4–CD8 lineage decisionNature Reviews Immunology, 2002
- TLE, the Human Homolog of Groucho, Interacts with AML1 and Acts as a Repressor of AML1-Induced TransactivationBiochemical and Biophysical Research Communications, 1998
- A lineage-specific transcriptional silencer regulates CD4 gene expression during T lymphocyte developmentCell, 1994
- Human homologs of a Drosophila Enhancer of Split gene product define a novel family of nuclear proteinsNature Genetics, 1992