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Real-time Analyses of Retinol Transport by the Membrane Receptor of Plasma Retinol Binding Protein
Published on: January 28, 2013
The use of a retinoid receptor antagonist in a new model to study vitamin A-dependent developmental events
D M Kochhar1, H Jiang, J D Penner
1Department of Pathology, Anatomy and Cell Biology, Thomas Jefferson University, Philadelphia, Pennsylvania 19107, USA. kochhard@jeflin.tju.edu
Abstract:
Multiple fetal anomalies occur in vitamin A deficient animals as well as in retinoic acid receptor gene 'knockout' mice, indicating that retinoic acid (an active metabolite of vitamin A) performs some essential functions in normal development. Additional approaches are needed to probe directly the stages and sites in the embryo where a presence of endogenous retinoic acid is indispensable. We have employed a new strategy for this purpose which involved an intervention in retinoic acid receptor (RAR)-dependent functions at specific developmental stages by means of a highly effective RAR antagonist, AGN 193109. We report that in an in vitro cell differentiation bioassay, AGN 193109 completely reversed the inhibitory action of a potent RAR agonist, AGN 190121. In pregnant mice, a single oral 1 mg/kg dose of the antagonist given on 8 day post coitum (dpc) produced a severe craniofacial anomaly (median cleft face or frontonasal dysplasia) and eye malformations in virtually all exposed fetuses. On the other hand, treatment on 11 dpc, a time in development when RARs are strategically expressed in the limb bud primordium, no limb anomalies could be induced by the antagonist. Even after a high dose of 100 mg/kg, limb development progressed normally in spite of the fact that measurable concentrations of the antagonist were present. Because retinoids are long known to influence skin morphology, we next monitored the effects of the antagonist on skin development. When given late in gestation, on 14 dpc, we found that the antagonist delayed differentiation and maturation of the fetal skin and hair follicles. We conclude that this model provides a convenient and pertinent system which enables us to seek and clarify true functions of retinoic acid and its cognate receptors in embryogenesis and in adult animals.
Insights
Retinoic acid is vital for embryonic development. Using a novel antagonist (AGN 193109), researchers found it causes craniofacial and eye defects when given early, but not limb defects when given later, revealing stage-specific functions.
Area of Science:
- Developmental Biology
- Molecular Biology
- Teratology
Background:
- Vitamin A deficiency and retinoic acid receptor (RAR) gene knockouts cause fetal anomalies, suggesting retinoic acid's crucial role in development.
- Directly probing the embryonic sites and stages requiring endogenous retinoic acid is essential to understand its functions.
Purpose of the Study:
- To investigate the indispensable roles of retinoic acid signaling during specific embryonic developmental stages.
- To utilize a novel RAR antagonist (AGN 193109) to probe RAR-dependent functions in vivo.
Main Methods:
- An in vitro cell differentiation bioassay was used to validate the RAR antagonist (AGN 193109) against a known agonist (AGN 190121).
- Pregnant mice were treated with AGN 193109 at different embryonic stages (8, 11, and 14 days post coitum).
- Fetal development, including craniofacial, eye, limb, and skin morphology, was assessed following antagonist exposure.
Main Results:
- AGN 193109 effectively reversed RAR agonist activity in vitro.
- Administration on day 8 post coitum induced severe craniofacial and eye malformations in fetuses.
- Treatment on day 11 post coitum did not result in limb anomalies, despite antagonist presence.
- Late gestation administration (day 14 post coitum) delayed fetal skin and hair follicle maturation.
Conclusions:
- This study demonstrates stage-specific essential functions of retinoic acid signaling during embryogenesis.
- The RAR antagonist model provides a valuable tool for dissecting the roles of retinoic acid and its receptors in development.
- Findings highlight critical windows for retinoic acid signaling in craniofacial, eye, and skin development.
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