Heterozygous <scp> <i>PNPT1</i> </scp> variants cause spinocerebellar ataxia type 25

遗传学 生物 脊髓小脑共济失调 共济失调 外显子组测序 基因座(遗传学) 外显子跳跃 外显子组 胡说 基因
作者
Mathieu Barbier,Melanie Bahlo,Alessandra Pennisi,Maxime Jacoupy,Rick M Tankard,Claire Ewenczyk,Kayli C Davies,Patricia Lino,Claire Colace,Haloom Rafehi,Nicolas Auger,Brendan R E Ansell,Ivo van der Stelt,Katherine B. Howell,Marie Coutelier,David J Amor,Emeline Mundwiller,Lena Guillot-Noël,Elsdon Storey,R J McKinlay Gardner,Mathew J Wallis,Alfredo Brusco,Olga Corti,Agnès Rötig,Richard J. Leventer,Alexis Brice,Martin B Delatycki,Giovanni Stevanin,Paul J. Lockhart,Alexandra Durr
出处
期刊:Annals of Neurology [Wiley]
标识
DOI:10.1002/ana.26366
摘要

Dominant spinocerebellar ataxias (SCA) are characterized by genetic heterogeneity. Some mapped and named loci remain without a causal gene identified. Here we applied next generation sequencing (NGS) to uncover the genetic etiology of the SCA25 locus.Whole-exome and whole-genome sequencing were performed in families linked to SCA25, including the French family in which the SCA25 locus was originally mapped. Whole exome sequence data were interrogated in a cohort of 796 ataxia patients of unknown etiology.The SCA25 phenotype spans a slowly evolving sensory and cerebellar ataxia, in most cases attributed to ganglionopathy. A pathogenic variant causing exon skipping was identified in the gene encoding Polyribonucleotide Nucleotidyltransferase PNPase 1 (PNPT1) located in the SCA25 linkage interval. A second splice variant in PNPT1 was detected in a large Australian family with a dominant ataxia also mapping to SCA25. An additional nonsense variant was detected in an unrelated individual with ataxia. Both nonsense and splice heterozygous variants result in premature stop codons, all located in the S1-domain of PNPase. In addition, an elevated type I interferon response was observed in blood from all affected heterozygous carriers tested. PNPase notably prevents the abnormal accumulation of double-stranded mtRNAs in the mitochondria and leakage into the cytoplasm, associated with triggering a type I interferon response.This study identifies PNPT1 as a new SCA gene, responsible for SCA25, and highlights biological links between alterations of mtRNA trafficking, interferonopathies and ataxia. ANN NEUROL 2022.
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