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The Col4a2em1(IMPC)Wtsi mouse line: lessons from the Deciphering the Mechanisms of Developmental Disorders program
Lukas F Reissig1, Anna Nele Herdina2, Julia Rose1
1Division of Anatomy, MIC, Medical University of Vienna, Waehringer Str. 13, 1090 Vienna, Austria.
Abstract:
The Deciphering the Mechanisms of Developmental Disorders (DMDD) program uses a systematic and standardised approach to characterise the phenotype of embryos stemming from mouse lines, which produce embryonically lethal offspring. Our study aims to provide detailed phenotype descriptions of homozygous Col4a2em1(IMPC)Wtsi mutants produced in DMDD and harvested at embryonic day 14.5. This shall provide new information on the role Col4a2 plays in organogenesis and demonstrate the capacity of the DMDD database for identifying models for researching inherited disorders. The DMDD Col4a2em1(IMPC)Wtsi mutants survived organogenesis and thus revealed the full spectrum of organs and tissues, the development of which depends on Col4a2 encoded proteins. They showed defects in the brain, cranial nerves, visual system, lungs, endocrine glands, skeleton, subepithelial tissues and mild to severe cardiovascular malformations. Together, this makes the DMDD Col4a2em1(IMPC)Wtsi line a useful model for identifying the spectrum of defects and for researching the mechanisms underlying autosomal dominant porencephaly 2 (OMIM # 614483), a rare human disease. Thus we demonstrate the general capacity of the DMDD approach and webpage as a valuable source for identifying mouse models for rare diseases.
Insights
The Deciphering the Mechanisms of Developmental Disorders program characterized Col4a2 mutant mice, revealing defects in multiple organs essential for development. This mouse model aids research into rare inherited disorders like autosomal dominant porencephaly 2.
Area of Science:
- Developmental Biology
- Genetics
- Rare Diseases
Background:
- The Deciphering the Mechanisms of Developmental Disorders (DMDD) program systematically characterizes embryonic lethal mouse models.
- Understanding the genetic basis of developmental disorders is crucial for human health.
Purpose of the Study:
- To provide detailed phenotypic descriptions of homozygous Col4a2em1(IMPC)Wtsi mutants.
- To investigate the role of Col4a2 in organogenesis and identify potential models for inherited disorders.
Main Methods:
- Generation and phenotypic characterization of Col4a2em1(IMPC)Wtsi mutant mice at embryonic day 14.5.
- Systematic analysis of organogenesis and tissue development in mutant embryos.
Main Results:
- Col4a2em1(IMPC)Wtsi mutants survived organogenesis, displaying a wide range of defects.
- Observed abnormalities include defects in the brain, cranial nerves, visual system, lungs, endocrine glands, skeleton, subepithelial tissues, and cardiovascular system.
- These findings highlight the critical role of Col4a2 in embryonic development.
Conclusions:
- The DMDD Col4a2em1(IMPC)Wtsi mouse line is a valuable model for studying autosomal dominant porencephaly 2.
- The DMDD approach and database are effective resources for identifying mouse models of rare inherited diseases.
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