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Reduced life- and healthspan in mice carrying a mono-allelic BubR1 MVA mutation
Tobias Wijshake1, Liviu A Malureanu, Darren J Baker
1Department of Pediatric and Adolescent Medicine, Mayo Clinic, Rochester, Minnesota, United States of America.
Abstract:
Mosaic Variegated Aneuploidy (MVA) syndrome is a rare autosomal recessive disorder characterized by inaccurate chromosome segregation and high rates of near-diploid aneuploidy. Children with MVA syndrome die at an early age, are cancer prone, and have progeroid features like facial dysmorphisms, short stature, and cataracts. The majority of MVA cases are linked to mutations in BUBR1, a mitotic checkpoint gene required for proper chromosome segregation. Affected patients either have bi-allelic BUBR1 mutations, with one allele harboring a missense mutation and the other a nonsense mutation, or mono-allelic BUBR1 mutations combined with allelic variants that yield low amounts of wild-type BubR1 protein. Parents of MVA patients that carry single allele mutations have mild mitotic defects, but whether they are at risk for any of the pathologies associated with MVA syndrome is unknown. To address this, we engineered a mouse model for the nonsense mutation 2211insGTTA (referred to as GTTA) found in MVA patients with bi-allelic BUBR1 mutations. Here we report that both the median and maximum lifespans of the resulting BubR1(+/GTTA) mice are significantly reduced. Furthermore, BubR1(+/GTTA) mice develop several aging-related phenotypes at an accelerated rate, including cataract formation, lordokyphosis, skeletal muscle wasting, impaired exercise ability, and fat loss. BubR1(+/GTTA) mice develop mild aneuploidies and show enhanced growth of carcinogen-induced tumors. Collectively, these data demonstrate that the BUBR1 GTTA mutation compromises longevity and healthspan, raising the interesting possibility that mono-allelic changes in BUBR1 might contribute to differences in aging rates in the general population.
Insights
Mosaic Variegated Aneuploidy (MVA) syndrome, linked to BUBR1 gene mutations, causes early death and aging symptoms. Mice with a BUBR1 mutation showed reduced lifespan and accelerated aging, suggesting a role in general population aging.
Area of Science:
- Genetics
- Cell Biology
- Aging Research
Background:
- Mosaic Variegated Aneuploidy (MVA) syndrome is a rare genetic disorder.
- It is characterized by chromosome instability and premature aging.
- Mutations in the BUBR1 gene are a primary cause of MVA syndrome.
Purpose of the Study:
- To investigate the health and lifespan consequences of a specific BUBR1 mutation.
- To determine if carrying a single mutated BUBR1 allele increases aging-related risks.
Main Methods:
- Engineered a mouse model with the BUBR1 GTTA nonsense mutation.
- Assessed lifespan, aging phenotypes, aneuploidy rates, and tumor development in mutant mice.
Main Results:
- BubR1(+/GTTA) mice exhibited significantly reduced median and maximum lifespans.
- Accelerated aging phenotypes observed, including cataracts, lordokyphosis, muscle wasting, and fat loss.
- Mice showed mild aneuploidies and increased tumor growth.
Conclusions:
- The BUBR1 GTTA mutation impairs longevity and healthspan.
- This suggests that heterozygous BUBR1 mutations may influence aging rates in the general population.
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