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Updated: Dec 29, 2025

In Vivo Functional Study of Disease-associated Rare Human Variants Using Drosophila
Published on: August 20, 2019
The Opdc missense mutation of Pax2 has a milder than loss-of-function phenotype
Sally H Cross1, Lisa McKie, Katrine West
1MRC Human Genetics Unit, Institute of Genetics and Molecular Medicine, Edinburgh, UK. sally.cross@hgu.mrc.ac.uk
Abstract:
Renal-coloboma syndrome, also known as papillorenal syndrome, is an autosomal dominant human disorder in which optic disc coloboma is associated with kidney abnormalities. Mutations in the paired domain transcription factor PAX2 have been found to be the underlying cause of this disease. Disease severity varies between patients, and in some cases, renal hypoplasia has been found in the absence of any retinal defects. Here we report an N-ethyl-N-nitrosourea-induced mouse mutation, Opdc, which is an isoleucinetothreonine missense mutation, I40T, in the first α-helix of the Pax2 paired domain. The mutant protein binds target DNA sequences less strongly than the wild-type protein and acts poorly to transactivate target promoters in culture. The phenotypic consequence of this mutation on the development of the eye and ear is similar to that reported for null alleles of Pax2. However, in homozygotes, cerebellar development is normal on a genetic background in which loss of Pax2 results in failure of cerebellar formation. Moreover, there is a genetic background effect on the heterozygous phenotype such that on some strain backgrounds, kidney development is unaffected. Opdc is the first hypomorphic mutation reported for Pax2 that differs in phenotype from loss-of-function mutations. These results suggest that PAX2 is a strong candidate gene for cases in which human patients have optic disc coloboma not associated with renal dysplasia.
Insights
A novel mouse mutation in Pax2, Opdc, reveals a hypomorphic allele distinct from loss-of-function mutations. This finding suggests PAX2
Area of Science:
- Genetics
- Developmental Biology
- Ophthalmology
Background:
- Renal-coloboma syndrome (RCS), or papillorenal syndrome, is an autosomal dominant disorder.
- Optic disc coloboma and kidney abnormalities characterize RCS.
- Mutations in the PAX2 gene are the known cause of RCS.
Purpose of the Study:
- To investigate the function of the PAX2 gene in development.
- To characterize a novel mouse mutation affecting Pax2.
- To explore genotype-phenotype correlations in PAX2-related disorders.
Main Methods:
- Induced mutation using N-ethyl-N-nitrosourea in mice.
- Characterization of the Opdc mutation (I40T missense mutation in the Pax2 paired domain).
- Analysis of DNA binding and transactivation activity of the mutant Pax2 protein.
- Phenotypic analysis of mutant mice (Opdc) in different genetic backgrounds.
Main Results:
- The Opdc mutation results in a protein with reduced DNA binding and transactivation ability.
- Heterozygous Opdc mice exhibit variable phenotypes, including unaffected kidney development in some genetic backgrounds.
- Homozygous Opdc mice show normal cerebellar development, unlike Pax2 null mutants.
- The Opdc mutation represents the first hypomorphic Pax2 allele with a distinct phenotype from null mutations.
Conclusions:
- PAX2 is a critical gene for eye, ear, and kidney development.
- The Opdc mutation provides insights into the varying severity of RCS.
- PAX2 is a strong candidate gene for human cases of optic disc coloboma without renal dysplasia.
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