## Abstract Summary: Satin (__sa__) homozygous mice have a silky coat with high sheen arising from structurally abnormal medulla cells and defects in differentiation of the hair shaft. We demonstrate that the winged helix/forkhead transcription factor, __Foxq1__ (Forkhead box, subclass __q____,__ m
Forkhead transcription factor foxe1 regulates chondrogenesis in zebrafish
โ Scribed by Chisako Nakada; Atsumi Iida; Yoko Tabata; Sumiko Watanabe
- Publisher
- John Wiley and Sons
- Year
- 2009
- Tongue
- English
- Weight
- 506 KB
- Volume
- 312B
- Category
- Article
- ISSN
- 1552-5007
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โฆ Synopsis
Abstract
Forkhead transcription factor (Fox) e1 is a causative gene for BamforthโLazarus syndrome, which is characterized by hypothyroidism and cleft palate. Applying degenerate polymerase chain reaction using primers specific for the conserved forkhead domain, we identified zebrafish foxe1 (foxe1). Foxe1 is expressed in the thyroid, pharynx, and pharyngeal skeleton during development; strongly expressed in the gill and weakly expressed in the brain, eye, and heart in adult zebrafish. A loss of function of foxe1 by morpholino antisense oligo (MO) exhibited abnormal craniofacial development, shortening of Meckel's cartilage and the ceratohyals, and suppressed chondrycytic proliferation. However, at 27โhr post fertilization, the foxe1 MOโinjected embryos showed normal dlx2, hoxa2, and hoxb2 expression, suggesting that the initial steps of pharyngeal skeletal development, including neural crest migration and specification of the pharyngeal arch occurred normally. In contrast, at 2 dpf, a severe reduction in the expression of sox9a, colIIaI, and runx2b, which play roles in chondrocytic proliferation and differentiation, was observed. Interestingly, fgfr2 was strongly upregulated in the branchial arches of the foxe1 MOโinjected embryos. Unlike Foxe1โnull mice, normal thyroid development in terms of morphology and thyroidโspecific marker expression was observed in foxe1 MOโinjected zebrafish embryos. Taken together, our results indicate that Foxe1 plays an important role in chondrogenesis during development of the pharyngeal skeleton in zebrafish, probably through regulation of fgfr2 expression. Furthermore, the roles reported for FOXE1 in mammalian thyroid development may have been acquired during evolution. J. Exp. Zool. (Mol. Dev. Evol.) 312B:827โ840, 2009. ยฉ 2009 WileyโLiss, Inc.
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