Gene-mapping study of extremes of cerebral small vessel disease reveals TRIM47 as a strong candidate
Aniket Mishra1, Cécile Duplaà2, Dina Vojinovic3,4
1University of Bordeaux, INSERM, Bordeaux Population Health Research Centre, Team ELEANOR, UMR 1219, F-33000 Bordeaux, France.
Abstract:
Cerebral small vessel disease is a leading cause of stroke and a major contributor to cognitive decline and dementia, but our understanding of specific genes underlying the cause of sporadic cerebral small vessel disease is limited. We report a genome-wide association study and a whole-exome association study on a composite extreme phenotype of cerebral small vessel disease derived from its most common MRI features: white matter hyperintensities and lacunes. Seventeen population-based cohorts of older persons with MRI measurements and genome-wide genotyping (n = 41 326), whole-exome sequencing (n = 15 965), or exome chip (n = 5249) data contributed 13 776 and 7079 extreme small vessel disease samples for the genome-wide association study and whole-exome association study, respectively. The genome-wide association study identified significant association of common variants in 11 loci with extreme small vessel disease, of which the chr12q24.11 locus was not previously reported to be associated with any MRI marker of cerebral small vessel disease. The whole-exome association study identified significant associations of extreme small vessel disease with common variants in the 5' UTR region of EFEMP1 (chr2p16.1) and one probably damaging common missense variant in TRIM47 (chr17q25.1). Mendelian randomization supports the causal association of extensive small vessel disease severity with increased risk of stroke and Alzheimer's disease. Combined evidence from summary-based Mendelian randomization studies and profiling of human loss-of-function allele carriers showed an inverse relation between TRIM47 expression in the brain and blood vessels and extensive small vessel disease severity. We observed significant enrichment of Trim47 in isolated brain vessel preparations compared to total brain fraction in mice, in line with the literature showing Trim47 enrichment in brain endothelial cells at single cell level. Functional evaluation of TRIM47 by small interfering RNAs-mediated knockdown in human brain endothelial cells showed increased endothelial permeability, an important hallmark of cerebral small vessel disease pathology. Overall, our comprehensive gene-mapping study and preliminary functional evaluation suggests a putative role of TRIM47 in the pathophysiology of cerebral small vessel disease, making it an important candidate for extensive in vivo explorations and future translational work.
Insights
Genetic factors contributing to cerebral small vessel disease are poorly understood. This study identifies TRIM47 as a potential gene involved in the disease, offering new avenues for research and treatment.
Area of Science:
- Genetics
- Neurology
- Vascular Biology
Background:
- Cerebral small vessel disease (CSVD) is a primary cause of stroke and dementia.
- Genetic underpinnings of sporadic CSVD remain largely unknown.
- MRI features like white matter hyperintensities and lacunes are key indicators of CSVD.
Purpose of the Study:
- To identify genetic variants associated with extreme cerebral small vessel disease phenotypes.
- To investigate the role of candidate genes, particularly TRIM47, in CSVD pathophysiology.
- To explore the causal relationship between CSVD severity and neurological disease risk.
Main Methods:
- Genome-wide association study (GWAS) and whole-exome association study (WEAS) on large cohorts.
- Mendelian randomization to assess causal relationships.
- Functional studies involving TRIM47 knockdown in human brain endothelial cells.
Main Results:
- GWAS identified 11 loci associated with extreme CSVD, including a novel locus at chr12q24.11.
- WEAS revealed associations with common variants in EFEMP1 and a missense variant in TRIM47.
- Mendelian randomization supported a causal link between CSVD severity and increased risk of stroke and Alzheimer's disease.
- TRIM47 knockdown increased endothelial permeability, a hallmark of CSVD.
Conclusions:
- TRIM47 is implicated in the pathophysiology of cerebral small vessel disease.
- Genetic variants in EFEMP1 and TRIM47 are associated with extreme CSVD phenotypes.
- TRIM47 represents a promising target for future research and potential therapeutic interventions in CSVD.
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