Overexpression of sonic hedgehog suppresses embryonic hair follicle morphogenesis
Contribuinte(s) |
Eric N. Olson |
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Data(s) |
01/01/2003
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Resumo |
The Sonic Hedgehog (Shh) signalling pathway plays a central role in the development of the skin and hair follicle and is a major determinant of skin tumorigenesis, most notably of basal cell carcinoma (BCC). Various mouse models involving either ablation or overexpression of key members of the Shh signalling pathway display a range of skin tumours. To further examine the role of Shh in skin development. we have overexpressed Shh in a subset of interfollicular basal cells from 12.5 dpc under the control of the human keratin 1 (HK1) promoter. The HK1-Shh transgenic mice display a range of skin anomalies, including highly pigmented inguinal lesions and regions of alopecia. The most striking hair follicle phenotype is a suppression in embryonic follicle development between 14.0 and 19.0 dpc, resulting in a complete absence of guard, awl, and auchene hair fibres. These data indicate that alternative signals are responsible for the development of different hair follicles and point to a major role of Shh signalling in the morphogenesis of guard, awl, and auchene hair fibres. Through a comparison with other mouse models, the characteristics of the HK1-Shh transgenic mice suggest that the precise timing and site of Shh expression are key in dictating the resultant skin and tumour phenotype. 2003 Elsevier Inc. All rights reserved. |
Identificador | |
Idioma(s) |
eng |
Publicador |
Academic Press |
Palavras-Chave | #Developmental Biology #Shh #Sonic Hedgehog #Transgenic #Skin #Epidermis #Human Keratin 1 #Basal-cell Carcinomas #Transgenic Mice #Signaling Pathway #Beta-catenin #Epidermal Differentiation #Human Homolog #Skin #Expression #Induction #Receptor #C1 #060103 Cell Development, Proliferation and Death #060199 Biochemistry and Cell Biology not elsewhere classified #060403 Developmental Genetics (incl. Sex Determination) #060405 Gene Expression (incl. Microarray and other genome-wide approaches) |
Tipo |
Journal Article |