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Active repression of RAR signaling is required for head formation
T Koide1, M Downes, R A Chandraratna
1Graduate School of Biostudies, Kyoto University, Sakyoku, Kyoto 606-8507, Japan.
Abstract:
The retinoic acid receptors (RARs) recruit coactivator and corepressor proteins to activate or repress the transcription of target genes depending on the presence of retinoic acid (RA). Despite a detailed molecular understanding of how corepressor complexes function, there is no in vivo evidence to support a necessary function for RAR-mediated repression. Signaling through RARs is required for patterning along the anteroposterior (A-P) axis, particularly in the hindbrain and posterior, although the absence of RA is required for correct anterior patterning. Because RARs and corepressors are present in regions in which RA is absent, we hypothesized that repression mediated through unliganded RARs might be important for anterior patterning. To test this hypothesis, specific reagents were used that either reduce or augment RAR-mediated repression. Derepression of RAR signaling by expressing a dominant-negative corepressor resulted in embryos that exhibited phenotypes similar to those treated by RA. Anterior structures such as forebrain and cement gland were greatly reduced, as was the expression of molecular markers. Enhancement of target gene repression using an RAR inverse agonist resulted in up-regulation of anterior neural markers and expansion of anterior structures. Morpholino antisense oligonucleotide-mediated RARalpha loss-of-function phenocopied the effects of RA treatment and dominant-negative corepressor expression. Microinjection of wild-type or dominant-negative RARalpha rescued the morpholino phenotype, confirming that RAR is functioning anteriorly as a transcriptional repressor. Lastly, increasing RAR-mediated repression potentiated head-inducing activity of the growth factor inhibitor cerberus, whereas releasing RAR-mediated repression blocked cerberus from inducing ectopic heads. We conclude that RAR-mediated repression of target genes is critical for head formation. This requirement establishes an important biological role for active repression of target genes by nuclear hormone receptors and illustrates a novel function for RARs during vertebrate development.
Insights
Retinoic acid receptors (RARs) use repression to control gene activity. This study shows RAR-mediated repression is essential for vertebrate head formation, revealing a new role for nuclear hormone receptors in development.
Area of Science:
- Developmental Biology
- Molecular Biology
- Genetics
Background:
- Retinoic acid receptors (RARs) regulate gene transcription via coactivator/corepressor recruitment.
- While corepressor mechanisms are understood, in vivo evidence for RAR-mediated repression's necessity is lacking.
- RAR signaling is crucial for anteroposterior axis patterning, with absence of retinoic acid (RA) needed for anterior patterning.
Purpose of the Study:
- To investigate the role of RAR-mediated repression in anterior patterning and head formation.
- To test the hypothesis that unliganded RARs mediate repression important for anterior development.
Main Methods:
- Utilized dominant-negative corepressors to reduce RAR-mediated repression.
- Employed an RAR inverse agonist to enhance target gene repression.
- Performed morpholino-based RARalpha loss-of-function studies.
- Used microinjection for rescue experiments with wild-type or dominant-negative RARalpha.
- Assessed effects on anterior structures, gene expression, and response to head-inducing factors.
Main Results:
- Reducing RAR-mediated repression mimicked RA treatment effects, causing reduced anterior structures and gene expression.
- Enhancing RAR-mediated repression led to up-regulated anterior neural markers and expanded anterior structures.
- RARalpha loss-of-function phenocopied repression reduction, with rescue confirming RAR's repressive role.
- Increased RAR-mediated repression potentiated head induction by cerberus; derepression blocked it.
Conclusions:
- RAR-mediated repression is critical for vertebrate head formation.
- This study provides in vivo evidence for a necessary role of RAR-mediated repression.
- Establishes a novel function for RARs in development and highlights the biological importance of active repression by nuclear hormone receptors.