Biallelic Intronic AAGGG Expansion of RFC1 is Related to Multiple System Atrophy.

Wan, Linlin; Chen, Zhao; Wan, Na; Liu, Mingjie; Xue, Jin; Chen, Hongsheng; Zhang, Youming; Peng, Yun et al. · Ann Neurol · 2020

case_control · Level III

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Abstract

A recessive biallelic repeat expansion, (AAGGG)<sub>exp</sub> , in the RFC1 gene has been reported to be a frequent cause of late-onset ataxia. For cerebellar ataxia, neuropathy, and vestibular areflexia syndrome (CANVAS), the recessive biallelic (AAGGG)<sub>exp</sub> genotype was present in ~92% of cases. This study aimed to examine whether the pentanucleotide repeat (PNR) was related to multiple system atrophy (MSA), which shares a spectrum of symptoms with CANVAS. In this study, we screened the pathogenic (AAGGG)<sub>exp</sub> repeat and 5 other PNRs in 104 Chinese sporadic adult-onset ataxia of unknown aetiology (SAOA) patients, 282 MSA patients, and 203 unaffected individuals. Multiple molecular genetic tests were used, including long-range polymerase chain reaction (PCR), repeat-primed PCR (RP-PCR), Sanger sequencing, and Southern blot. Comprehensive clinical assessments were conducted, including neurological examination, neuroimaging, nerve electrophysiology, and examination of vestibular function. We identified biallelic (AAGGG)<sub>exp</sub> in 1 SAOA patient and 3 MSA patients. Additionally, 1 MSA patient had the (AAGGG)<sub>exp</sub> /(AAAGG)<sub>exp</sub> genotype with uncertain pathogenicity. We also described the carrier frequency for different PNRs in our cohorts. Furthermore, we summarized the distinct phenotypes of affected patients, suggesting that biallelic (AAGGG)<sub>exp</sub> in RFC1 could be associated with MSA and should be screened routinely in the MSA diagnostic workflow. Our results expanded the clinical phenotypic spectrum of RFC1-related disorders and raised the possibility that MSA might share the same genetic background as CANVAS, which is crucial for re-evaluating the current CANVAS and MSA diagnostic criteria. ANN NEUROL 2020;88:1132-1143.

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