Analysis of common and rare VPS13C variants in late-onset Parkinson disease

Uladzislau Rudakou, Jennifer A. Ruskey, Lynne Krohn, Sandra B. Laurent, Dan Spiegelman, Lior Greenbaum, Gilad Yahalom, Alex Desautels, Jacques Y. Montplaisir, Stanley Fahn, Cheryl H. Waters, Oren Levy, Caitlin M. Kehoe, Sushma Narayan, Yves Dauvilliers, Nicolas Dupré, Sharon Hassin-Baer, Roy N. Alcalay, Guy A. Rouleau, Edward A. FonZiv Gan-Or

Research output: Contribution to journalArticlepeer-review


ObjectiveWe aimed to study the role of coding VPS13C variants in a large cohort of patients with late-onset Parkinson disease (PD) (LOPD).MethodsVPS13C and its untranslated regions were sequenced using targeted next-generation sequencing in 1,567 patients with PD and 1,667 controls from 3 cohorts. Association tests of rare potential homozygous and compound heterozygous variants and burden tests for rare heterozygous variants were performed. Common variants were analyzed using logistic regression adjusted for age and sex in each of the cohorts, followed by a meta-analysis.ResultsNo biallelic carriers of rare VPS13C variants were found among patients, and 2 carriers of compound heterozygous variants were found in 2 controls. There was no statistically significant burden of rare (minor allele frequency [MAF] <1%) or very rare (MAF <0.1%) coding VPS13C variants in PD. A VPS13C haplotype including the p.R153H-p.I398I-p.I1132V-p.Q2376Q variants was nominally associated with a reduced risk for PD (meta-analysis of the tagging SNP p.I1132V [odds ratio = 0.48, 95% confidence interval = 0.28-0.82, p = 0.0052]). This haplotype was not in linkage disequilibrium with the known genome-wide association study top hit.ConclusionsOur results do not support a role for rare heterozygous or biallelic VPS13C variants in LOPD. Additional genetic replication and functional studies are needed to examine the role of the haplotype identified here associated with reduced risk for PD.

Original languageEnglish
Article numbere385
JournalNeurology: Genetics
Issue number1
StatePublished - 2020


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