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Genetic modifiers of otocephalic phenotypes in Otx2 heterozygous mutant mice
Takuichiro Hide1, Jun Hatakeyama, Chiharu Kimura-Yoshida
1Present address: Vertebrate Body Plan Group, RIKEN Center for Developmental Biology, 2-2-3 Minatojima Minami Cho, Chuou-Ku, Kobe, Hyougo 650-0047, Japan.
Abstract:
Mice heterozygous for the Otx2 mutation display a craniofacial malformation, known as otocephaly or agnathia-holoprosencephaly complex. The severity of the phenotype is dependent on the genetic background of a C57BL/6 (B6) strain; most of the offspring of Otx2 knock-out chimeras, which are equivalent to the F(1) of CBA and B6 strains, backcrossed with B6 females display reduction or loss of mandible, whereas those backcrossed with CBA females do not show noticeable phenotype at birth. The availability of phenotypically disparate strains renders identification of Otx2 modifier loci possible. In this study, a backcross of chimera with B6 was generated and genome-wide scans were conducted with polymorphic markers for non-mendelian distribution of alleles in Otx2 heterozygous mutant mice displaying abnormalities in the lower jaw. We identified one significant locus, Otmf18, between D18Mit68 and D18Mit120 on chromosomes 18, linked to the mandibular phenotype (LOD score 3.33). A similar replication experiment using a second backcross (N3) mouse demonstrated the presence of another significant locus, Otmf2 between D2Mit164 and D2Mit282 on chromosome 2, linked to the mandibular phenotype (LOD score 3.93). These two modifiers account for the distribution of the craniofacial malformations by the genetic effect between B6 and CBA strains. Moreover, Otmf2 contain a candidate gene for several diseases in mice and humans. These genetic studies involving an otocephalic mouse model appear to provide new insights into mechanistic pathways of craniofacial development. Furthermore, these experiments offer a powerful approach with respect to identification and characterization of candidate genes that may contribute to human agnathia-holoprosencephaly complex diseases.
Insights
Genetic background influences Otx2 mutation severity in mice, causing craniofacial malformations. Researchers identified two modifier loci, Otmf18 and Otmf2, crucial for understanding otocephaly and agnathia-holoprosencephaly complex in humans.
Area of Science:
- Developmental biology
- Genetics
- Medical research
Background:
- Mice heterozygous for the Otx2 mutation exhibit craniofacial malformations, specifically otocephaly or agnathia-holoprosencephaly complex.
- Phenotype severity varies significantly based on the genetic background (C57BL/6 vs. CBA strains), enabling modifier locus identification.
Purpose of the Study:
- To identify genetic loci that modify the Otx2 mutation's craniofacial phenotype.
- To understand the genetic basis of otocephaly and agnathia-holoprosencephaly complex.
Main Methods:
- Genome-wide scans using polymorphic markers were performed on backcrossed Otx2 heterozygous mutant mice.
- Analysis focused on non-Mendelian allele distribution linked to mandibular abnormalities.
Main Results:
- One significant locus, Otmf18 on chromosome 18, was linked to the mandibular phenotype (LOD score 3.33).
- A second significant locus, Otmf2 on chromosome 2, was identified in a replication experiment (LOD score 3.93).
- These loci explain the strain-dependent distribution of craniofacial malformations.
Conclusions:
- Two novel modifier loci, Otmf18 and Otmf2, significantly influence Otx2-related craniofacial development.
- Otmf2 harbors a candidate gene relevant to human diseases.
- This mouse model provides insights into craniofacial development and aids in identifying genes for human agnathia-holoprosencephaly complex.