Analysis of the vestigial tail mutation demonstrates that Wnt-3a gene dosage regulates mouse axial development.
- 1 February 1996
- journal article
- Published by Cold Spring Harbor Laboratory in Genes & Development
- Vol. 10 (3) , 313-324
- https://doi.org/10.1101/gad.10.3.313
Abstract
Mice homozygous for the recessive mutation vestigial tail (vt), which arose spontaneously on Chromosome 11, exhibit vertebral abnormalities, including loss of caudal vertebrae leading to shortening of the tail. Wnt-3a, a member of the wingless family of secreted glycoproteins, maps to the same chromosome. Embryos homozygous for a null mutation in Wnt-3a (Wnt-3a(neo)) have a complete absence of tail bud development and are truncated rostral to the hindlimbs. Several lines of evidence reveal that vt is a hypomorphic allele of Wnt-3a. We show that Wnt-3a and vt cosegregate in a high-resolution backcross and fail to complement, suggesting that Wnt-3a(neo) and vt are allelic. Embryos heterozygous for both alleles have a phenotype intermediate between that of Wnt-3a(neo) and vt homozygotes, lacking a tail, but developing thoracic and a variable number of lumbar vertebrae. Although no gross alteration in the Wnt-3a gene was detected in vt mice and the Wnt-3a coding region was normal, Wnt-3a expression was markedly reduced in vt/vt embryos consistent with a regulatory mutation in Wnt-3a. Furthermore, the analysis of allelic combinations indicates that Wnt-3a is required throughout the period of tail bud development for caudal somitogenesis. Interestingly, increasing levels of Wnt-3a activity appear to be necessary for the formation of more posterior derivatives of the paraxial mesoderm.Keywords
This publication has 40 references indexed in Scilit:
- Targeting the mouse genome: a compendium of knockouts (part I)Current Biology, 1995
- DNA rearrangements located over 100 kb 5' of the Steel (Sl)-coding region in Steel-panda and Steel-contrasted mice deregulate Sl expression and cause female sterility by disrupting ovarian follicle development.Genes & Development, 1995
- Developmental anomalies of Xenopus embryos following microinjection of SPARC antibodiesJournal of Experimental Zoology, 1993
- Localization of the panhypopituitary dwarf mutation (df) on mouse chromosome 11 in an intersubspecific backrossGenomics, 1991
- Diabetic EmbryopathyObstetrical & Gynecological Survey, 1986
- Effects of complete tail bud extirpation on early development of the posterior region of the chick embryoThe Anatomical Record, 1978
- The development of wingless, a homeotic mutation of DrosophilaDevelopmental Biology, 1977
- The skeletal phenotype of some mouse chimaerasProceedings of the Royal Society of London. B. Biological Sciences, 1972
- Genetical studies with ‘Vestigial Tail’ mice II. The position of vestigial in the seventh linkage groupJournal of Genetics, 1955
- Genetical studies with ‘Vestigial Tail’ mice I. The sex difference in crossing-over between vestigial and rexJournal of Genetics, 1955