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Publication : Uncoupling of retinoic acid signaling from tailbud development before termination of body axis extension.

First Author  Cunningham TJ Year  2011
Journal  Genesis Volume  49
Issue  10 Pages  776-83
PubMed ID  21538808 Mgi Jnum  J:178365
Mgi Id  MGI:5298188 Doi  10.1002/dvg.20763
Citation  Cunningham TJ, et al. (2011) Uncoupling of retinoic acid signaling from tailbud development before termination of body axis extension. Genesis 49(10):776-83
abstractText  During the early stages of body axis extension, retinoic acid (RA) synthesized in somites by Raldh2 represses caudal fibroblast growth factor (FGF) signaling to limit the tailbud progenitor zone. Excessive RA down-regulates Fgf8 and triggers premature termination of body axis extension, suggesting that endogenous RA may function in normal termination of body axis extension. Here, we demonstrate that Raldh2-/- mouse embryos undergo normal down-regulation of tailbud Fgf8 expression and termination of body axis extension in the absence of RA. Interestingly, Raldh2 expression in wild-type tail somites and tailbud from E10.5 onwards does not result in RA activity monitored by retinoic acid response element (RARE)-lacZ. Treatment of wild-type tailbuds with physiological levels of RA or retinaldehyde induces RARE-lacZ activity, validating the sensitivity of RARE-lacZ and demonstrating that deficient RA synthesis in wild-type tail somites and tailbud is due to a lack of retinaldehyde synthesis. These studies demonstrate an early uncoupling of RA signaling from mouse tailbud development and show that termination of body axis extension occurs in the absence of RA signaling.
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