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Expression Patterns of Wnt Genes During Development of an Anterior Part of the Chicken Eye

Overview
Journal Dev Dyn
Publisher Wiley
Date 2005 Nov 1
PMID 16258938
Citations 33
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Abstract

To address the roles of Wnts in the development of the anterior eye, we used a chicken model to perform comprehensive expression analysis of all Wnt genes during anterior eye development. In analyzing the available genomic sequences, we found that the chicken genome encodes 18 Wnt proteins that are homologous to corresponding human and mouse proteins. The mRNA sequences for 12 chicken Wnt genes are available in GenBank, and mRNAs for six other Wnt genes (Wnt2, Wnt5b, Wnt7b, Wnt8b, Wnt9b, and Wnt16) were identified and cloned based on the homology to the genes from other species. In addition, we found that chicken Wnt3a and Wnt7b genes encode two alternative mRNA isoforms containing different first exons. Following in situ hybridization, we found that out of 18 Wnt genes, 11 genes were expressed in the anterior eye, exhibiting distinct temporal-spatial patterns. Several Wnts were expressed in the lens, including Wnt2 and Wnt2b in the anterior epithelium and Wnt5a, Wnt5b, Wnt7a, and Wnt7b in the differentiating lens fiber cells. In the cornea, we detected Wnt3a, Wnt6, and Wnt9b in the ocular surface ectoderm, including the corneal epithelium, and Wnt9a in the corneal endothelium from the onset of its differentiation. In the optic cup, Wnt2, Wnt2b, and Wnt9a were localized in the rim of the optic cup (presumptive iris), while Wnt5a and Wnt16 were detected in the ciliary epithelium/iris zone of the differentiated optic cup, and Wnt6 was expressed in the iridial mesenchyme. These data suggest that Wnt signaling might play important roles in anterior eye development.

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References
1.
Ang S, Stump R, Lovicu F, McAvoy J . Spatial and temporal expression of Wnt and Dickkopf genes during murine lens development. Gene Expr Patterns. 2004; 4(3):289-95. DOI: 10.1016/j.modgep.2003.11.002. View

2.
Smith A, Miller L, Song N, Taketo M, Lang R . The duality of beta-catenin function: a requirement in lens morphogenesis and signaling suppression of lens fate in periocular ectoderm. Dev Biol. 2005; 285(2):477-89. DOI: 10.1016/j.ydbio.2005.07.019. View

3.
Shestopalov V, Bassnett S . Expression of autofluorescent proteins reveals a novel protein permeable pathway between cells in the lens core. J Cell Sci. 2000; 113 ( Pt 11):1913-21. DOI: 10.1242/jcs.113.11.1913. View

4.
Katoh M, Kirikoshi H, Saitoh T, Sagara N, Koike J . Alternative splicing of the WNT-2B/WNT-13 gene. Biochem Biophys Res Commun. 2000; 275(1):209-16. DOI: 10.1006/bbrc.2000.3252. View

5.
Fear M, Kelsell D, Spurr N, Barnes M . Wnt-16a, a novel Wnt-16 isoform, which shows differential expression in adult human tissues. Biochem Biophys Res Commun. 2000; 278(3):814-20. DOI: 10.1006/bbrc.2000.3852. View