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Deletion of the App-Runx1 region in mice models human partial monosomy 21
Thomas Arbogast1, Matthieu Raveau1, Claire Chevalier1
1Institut de Génétique et de Biologie Moléculaire et Cellulaire, Department of Translational Medicine and Neurogenetics, 1 rue Laurent Fries, Illkirch 67404, France Centre National de la Recherche Scientifique, UMR7104, Illkirch 67404, France Institut National de la Santé et de la Recherche Médicale, U964, Illkirch 67404, France Université de Strasbourg, Illkirch 67404, France.
Abstract:
Partial monosomy 21 (PM21) is a rare chromosomal abnormality that is characterized by the loss of a variable segment along human chromosome 21 (Hsa21). The clinical phenotypes of this loss are heterogeneous and range from mild alterations to lethal consequences, depending on the affected region of Hsa21. The most common features include intellectual disabilities, craniofacial dysmorphology, short stature, and muscular and cardiac defects. As a complement to human genetic approaches, our team has developed new monosomic mouse models that carry deletions on Hsa21 syntenic regions in order to identify the dosage-sensitive genes that are responsible for the symptoms. We focus here on the Ms5Yah mouse model, in which a 7.7-Mb region has been deleted from the App to Runx1 genes. Ms5Yah mice display high postnatal lethality, with a few surviving individuals showing growth retardation, motor coordination deficits, and spatial learning and memory impairments. Further studies confirmed a gene dosage effect in the Ms5Yah hippocampus, and pinpointed disruptions of pathways related to cell adhesion (involving App, Cntnap5b, Lgals3bp, Mag, Mcam, Npnt, Pcdhb2, Pcdhb3, Pcdhb4, Pcdhb6, Pcdhb7, Pcdhb8, Pcdhb16 and Vwf). Our PM21 mouse model is the first to display morphological abnormalities and behavioural phenotypes similar to those found in affected humans, and it therefore demonstrates the major contribution that the App-Runx1 region has in the pathophysiology of PM21.
Insights
Partial monosomy 21 (PM21) causes developmental issues due to chromosome 21 deletions. A new mouse model reveals the App-Runx1 region is critical for PM21 symptoms, including cognitive and motor deficits.
Area of Science:
- Genetics
- Developmental Biology
- Neuroscience
Background:
- Partial monosomy 21 (PM21) is a rare chromosomal disorder with variable phenotypes.
- Common features include intellectual disability, growth issues, and heart defects.
Purpose of the Study:
- To develop mouse models for identifying dosage-sensitive genes in PM21.
- To investigate the role of the App-Runx1 region in PM21 pathophysiology.
Main Methods:
- Creation of monosomic mouse models with deletions on Hsa21 syntenic regions.
- Phenotypic analysis of the Ms5Yah mouse model (7.7-Mb deletion from App to Runx1).
Main Results:
- Ms5Yah mice exhibit high postnatal lethality, growth retardation, and motor/learning deficits.
- Gene dosage effects were confirmed in the hippocampus, disrupting cell adhesion pathways.
- The App-Runx1 region deletion significantly contributes to PM21 phenotypes.
Conclusions:
- The Ms5Yah mouse model accurately recapitulates human PM21 morphological and behavioral abnormalities.
- This model highlights the App-Runx1 region's crucial role in PM21.
- Identifies cell adhesion pathway disruptions as key to PM21.
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