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The Genetic Basis of Moyamoya Disease
R Mertens1, M Graupera2, H Gerhardt3
1Charité-Universitätsmedizin Berlin, corporate member of Freie Universität Berlin and Humboldt-Universität zu Berlin, Department of Neurosurgery, Berlin, Germany.
Abstract:
Moyamoya disease (MMD) is a rare cerebrovascular disease characterized by progressive spontaneous bilateral occlusion of the intracranial internal cerebral arteries (ICA) and their major branches with compensatory capillary collaterals resembling a "puff of smoke" (Japanese: Moyamoya) on cerebral angiography. These pathological alterations of the vessels are called Moyamoya arteriopathy or vasculopathy and a further distinction is made between primary and secondary MMD. Clinical presentation depends on age and population, with hemorrhage and ischemic infarcts in particular leading to severe neurological dysfunction or even death. Although the diagnostic suspicion can be posed by MRA or CTA, cerebral angiography is mandatory for diagnostic confirmation. Since no therapy to limit the stenotic lesions or the development of a collateral network is available, the only treatment established so far is surgical revascularization. The pathophysiology still remains unknown. Due to the early age of onset, familial cases and the variable incidence rate between different ethnic groups, the focus was put on genetic aspects early on. Several genetic risk loci as well as individual risk genes have been reported; however, few of them could be replicated in independent series. Linkage studies revealed linkage to the 17q25 locus. Multiple studies on the association of SNPs and MMD have been conducted, mainly focussing on the endothelium, smooth muscle cells, cytokines and growth factors. A variant of the RNF213 gene was shown to be strongly associated with MMD with a founder effect in the East Asian population. Although it is unknown how mutations in the RNF213 gene, encoding for a ubiquitously expressed 591 kDa cytosolic protein, lead to clinical features of MMD, RNF213 has been confirmed as a susceptibility gene in several studies with a gene dosage-dependent clinical phenotype, allowing preventive screening and possibly the development of new therapeutic approaches. This review focuses on the genetic basis of primary MMD only.
Insights
Moyamoya disease (MMD) is a rare cerebrovascular condition. Genetic factors, particularly the RNF213 gene, are strongly linked to MMD, enabling potential screening and therapies.
Area of Science:
- Neurology
- Genetics
- Vascular Biology
Background:
- Moyamoya disease (MMD) is a rare, progressive cerebrovascular disorder.
- It involves intracranial artery occlusion and compensatory collateral formation.
- Clinical presentation varies, often leading to severe neurological deficits.
Purpose of the Study:
- To review the genetic basis of primary Moyamoya disease.
- To highlight the role of genetic factors in MMD pathophysiology.
- To discuss the implications of genetic findings for diagnosis and treatment.
Main Methods:
- Review of genetic association studies, linkage analyses, and SNP studies.
- Focus on identified risk loci and genes, particularly RNF213.
- Analysis of gene dosage effects and population-specific findings.
Main Results:
- Several genetic risk loci and genes have been implicated in MMD.
- A strong association exists between RNF213 gene variants and MMD, especially in East Asians.
- RNF213 is confirmed as a susceptibility gene with a gene dosage-dependent phenotype.
Conclusions:
- Genetic factors play a significant role in the etiology of primary MMD.
- RNF213 is a key susceptibility gene for MMD, offering avenues for screening.
- Further research into RNF213 function may lead to novel therapeutic strategies.
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