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Published on: August 15, 2019
A genome-wide association study identifies RNF213 as the first Moyamoya disease gene
Fumiaki Kamada1, Yoko Aoki, Ayumi Narisawa
1Department of Medical Genetics, Tohoku University School of Medicine, Sendai, Japan.
Abstract:
Moyamoya disease (MMD) shows progressive cerebral angiopathy characterized by bilateral internal carotid artery stenosis and abnormal collateral vessels. Although ∼ 15% of MMD cases are familial, the MMD gene(s) remain unknown. A genome-wide association study of 785,720 single-nucleotide polymorphisms (SNPs) was performed, comparing 72 Japanese MMD patients with 45 Japanese controls and resulting in a strong association of chromosome 17q25-ter with MMD risk. This result was further confirmed by a locus-specific association study using 335 SNPs in the 17q25-ter region. A single haplotype consisting of seven SNPs at the RNF213 locus was tightly associated with MMD (P = 5.3 × 10(-10)). RNF213 encodes a really interesting new gene finger protein with an AAA ATPase domain and is abundantly expressed in spleen and leukocytes. An RNA in situ hybridization analysis of mouse tissues indicated that mature lymphocytes express higher levels of Rnf213 mRNA than their immature counterparts. Mutational analysis of RNF213 revealed a founder mutation, p.R4859K, in 95% of MMD families, 73% of non-familial MMD cases and 1.4% of controls; this mutation greatly increases the risk of MMD (P = 1.2 × 10(-43), odds ratio = 190.8, 95% confidence interval = 71.7-507.9). Three additional missense mutations were identified in the p.R4859K-negative patients. These results indicate that RNF213 is the first identified susceptibility gene for MMD.
Insights
Researchers identified the RNF213 gene as the first susceptibility gene for Moyamoya disease (MMD). A specific mutation in this gene significantly increases MMD risk, offering new insights into this progressive cerebral angiopathy.
Area of Science:
- Genetics
- Neurology
- Molecular Biology
Background:
- Moyamoya disease (MMD) is a progressive cerebral angiopathy with unknown genetic causes, despite a familial component.
- Characterized by internal carotid artery stenosis and abnormal collateral vessels, MMD's genetic underpinnings require elucidation.
Purpose of the Study:
- To identify the susceptibility gene(s) responsible for Moyamoya disease.
- To investigate the genetic association between RNF213 and MMD risk.
Main Methods:
- Genome-wide association study (GWAS) of 785,720 single-nucleotide polymorphisms (SNPs) in Japanese MMD patients and controls.
- Locus-specific association study and mutational analysis of the RNF213 gene.
- RNA in situ hybridization to analyze Rnf213 mRNA expression in mouse tissues.
Main Results:
- A strong association was found between chromosome 17q25-ter and MMD risk.
- A specific RNF213 haplotype was tightly linked to MMD (P = 5.3 × 10(-10)).
- A founder mutation, RNF213 p.R4859K, was identified in a high percentage of MMD cases, significantly increasing MMD risk (OR = 190.8).
Conclusions:
- RNF213 is the first identified susceptibility gene for Moyamoya disease.
- The RNF213 p.R4859K mutation is a major risk factor for MMD.
- Further research into RNF213's role in MMD pathogenesis is warranted.
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