Mutations in mouse Aristaless-like4 cause Strong’s luxoid polydactyly
Open Access
- 15 July 1998
- journal article
- Published by The Company of Biologists in Development
- Vol. 125 (14) , 2711-2721
- https://doi.org/10.1242/dev.125.14.2711
Abstract
Mutations that affect vertebrate limb development provide insight into pattern formation, evolutionary biology and human birth defects. Patterning of the limb axes depends on several interacting signaling centers; one of these, the zone of polarizing activity (ZPA), comprises a group of mesenchymal cells along the posterior aspect of the limb bud that express sonic hedgehog (Shh) and plays a key role in patterning the anterior-posterior (AP) axis. The mechanisms by which the ZPA and Shh expression are confined to the posterior aspect of the limb bud mesenchyme are not well understood. The polydactylous mouse mutant Strong’s luxoid (lst) exhibits an ectopic anterior ZPA and expression of Shh that results in the formation of extra anterior digits. Here we describe a new chlorambucil-induced deletion allele, lstAlb, that uncovers the lst locus. Integration of the lst genetic and physical maps suggested the mouse Aristaless-like4 (Alx4) gene, which encodes a paired-type homeodomain protein that plays a role in limb patterning, as a strong molecular candidate for the Strong’s luxoid gene. In genetic crosses, the three lst mutant alleles fail to complement an Alx4 gene-targeted allele. Molecular and biochemical characterization of the three lst alleles reveal mutations of the Alx4 gene that result in loss of function. Alx4 haploinsufficiency and the importance of strain-specific modifiers leading to polydactyly are indicative of a critical threshold requirement for Alx4 in a genetic program operating to restrict polarizing activity and Shh expression in the anterior mesenchyme of the limb bud, and suggest that mutations in Alx4 may also underlie human polydactyly.Keywords
This publication has 57 references indexed in Scilit:
- Limb mutants: what can they tell us about normal limb development?Current Opinion in Genetics & Development, 1997
- Haploinsufficient Phenotypes inBmp4Heterozygous Null Mice and Modification by Mutations inGli3andAlx4Developmental Biology, 1997
- Multigenic Control of the Localization of the Zone of Polarizing Activity in Limb Morphogenesis in the MouseDevelopmental Biology, 1997
- A comprehensive genetic map of the mouse genomeNature, 1996
- Direct repeats as selective response elements for the thyroid hormone, retinoic acid, and vitamin D3 receptorsCell, 1991
- Polydactyly in the earliest known tetrapod limbsNature, 1990
- Responses to selection for plus and minus modifiers of some effects of Strong's luxoid gene on the mouse skeletonTeratology, 1968
- The origin and development of alopecia in mice homozygous for strong's luxoid geneJournal of Morphology, 1966
- The embryological development of the effects of Strong's luxoid gene in the mouseJournal of Morphology, 1963
- The embryological development of the skeletal effects of the luxoid gene in the mouse, including its interactions with the luxate geneJournal of Morphology, 1959