Serrate2 is disrupted in the mouse limb-development mutant syndactylism
- 1 October 1997
- journal article
- letter
- Published by Springer Nature in Nature
- Vol. 389 (6652) , 722-725
- https://doi.org/10.1038/39587
Abstract
The mouse syndactylism ( sm ) mutation impairs some of the earliest aspects of limb development and leads to subsequent abnormalities in digit formation1,2,3. In sm homozygotes, the apical ectodermal ridge (AER) is hyperplastic by embryonic day 10.5, leading to abnormal dorsoventral thickening of the limb bud, subsequent merging of the skeletal condensations that give rise to cartilage and bone in the digits, and eventual fusion of digits. The AER hyperplasia and its effect on early digital patterning distinguish sm from many other syndactylies that result from later failure of cell death in the interdigital areas4,5. Here we use positional cloning to show that the gene mutated in sm mice encodes the putative Notch ligand Serrate2. The results provide direct evidence that a Notch signalling pathway is involved in the earliest stages of limb-bud patterning and support the idea that an ancient genetic mechanism underlies both AER formation in vertebrates and wing-margin formation in flies6,7. In addition to cloning the sm gene, we have mapped three modifiers of sm, for which we suggest possible candidate genes.Keywords
This publication has 7 references indexed in Scilit:
- Fringe modulates Notch–ligand interactionsNature, 1997
- Expression of Radical fringe in limb-bud ectoderm regulates apical ectodermal ridge formationNature, 1997
- Radical fringe positions the apical ectodermal ridge at the dorsoventral boundary of the vertebrate limbNature, 1997
- A comprehensive genetic map of the mouse genomeNature, 1996
- Genetic variants and strains of the Laboratory mousePublished by Oxford University Press (OUP) ,1996
- Signalling downstream of activated mammalian NotchNature, 1995
- Sequence of C. elegans lag-2 reveals a cell-signalling domain shared with Delta and Serrate of DrosophilaNature, 1994