Genome-wide estimate of the heritability of Multiple System Atrophy
M Federoff1, T R Price2, A Sailer3
1Laboratory of Neurogenetics, National Institute on Aging, National Institutes of Health, Bethesda, MD 20892, USA; Department of Molecular Neuroscience, UCL Institute of Neurology, London, UK.
Introduction:
Multiple System Atrophy (MSA) is a neurodegenerative disease which presents heterogeneously with symptoms and signs of parkinsonism, ataxia and autonomic dysfunction. Although MSA typically occurs sporadically, rare pathology-proven MSA families following either autosomal recessive or autosomal dominant patterns have been described, indicating a heritable contribution to the pathogenesis.
Methods:
We used Genome-Wide Complex Trait Analysis (GCTA) to estimate the heritable component of MSA due to common coding variability in imputed genotype data of 907 MSA cases and 3866 population-matched controls. GCTA only assesses the effect of putative causal variants in linkage disequilibrium (LD) with all common SNPs on the genotyping platform.
Results:
We estimate the heritability among common variants of MSA in pooled cases at 2.09-6.65%, with a wider range of values in geographic and diagnostic subgroups. Meta-analysis of our geographic cohorts reveals high between-group heterogeneity. Contributions of single chromosomes are generally negligible. We suggest that all calculated MSA heritability among common variants could be explained by the presence of misdiagnosed cases in the clinical subgroup based on a Bayesian estimate using literature-derived rates of misdiagnosis.
Discussion:
MSA is a challenging disease to study due to high rates of misdiagnosis and low prevalence. Given our low estimates of heritability, common genetic variation appears to play a less prominent role in risk for MSA than in other complex neurodegenerative diseases such as Parkinson's disease, Alzheimer's disease, and Amyotrophic Lateral Sclerosis. The success of future gene discovery efforts rests on large pathologically-confirmed case series and an interrogation of both common and rare genetic variants.
Insights
Common genetic variants explain little of the heritability in Multiple System Atrophy (MSA), a rare neurodegenerative disease. Misdiagnosis may account for all observed heritability, suggesting limited common variant contribution to MSA risk.
Area of Science:
- Neurogenetics
- Complex Trait Genetics
Background:
- Multiple System Atrophy (MSA) is a rare, heterogeneous neurodegenerative disorder.
- While typically sporadic, rare familial cases suggest a heritable component in MSA pathogenesis.
Purpose of the Study:
- To estimate the heritable component of MSA attributable to common genetic variants.
- To investigate the role of common genetic variation in MSA risk.
Main Methods:
- Genome-Wide Complex Trait Analysis (GCTA) was applied to imputed genotype data.
- Analysis included 907 MSA cases and 3866 population-matched controls.
- GCTA assessed variants in linkage disequilibrium with common single nucleotide polymorphisms (SNPs).
Main Results:
- Heritability estimates for MSA among common variants ranged from 2.09% to 6.65%.
- High heterogeneity was observed across geographic and diagnostic subgroups.
- Bayesian analysis suggested misdiagnosed cases could explain all calculated heritability.
Conclusions:
- Common genetic variation plays a less significant role in MSA risk compared to other neurodegenerative diseases.
- High misdiagnosis rates and low prevalence complicate MSA genetic studies.
- Future gene discovery requires large, pathologically confirmed cohorts and examination of both common and rare variants.
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