Repeat expansions in NOP56 are a cause of spinocerebellar ataxia Type 36 in the British population

Author:

Lam Tanya1,Rocca Clarissa23ORCID,Ibanez Kristina2,Dalmia Anupriya2,Tallman Samuel4,Hadjivassiliou Marios5,Hensiek Anke6,Nemeth Andrea7,Facchini Stefano3,Ambrose J C,Arumugam P,Bevers R,Bleda M,Boardman-Pretty F,Boustred C R,Brittain H,Brown M A,Caulfield M J,Chan G C,Giess A,Griffin J N,Hamblin A,Henderson S,Hubbard T J P,Jackson R,Jones L J,Kasperaviciute D,Kayikci M,Kousathanas A,Lahnstein L,Lakey A,Leigh S E A,Leong I U S,Lopez F J,Maleady-Crowe F,McEntagart M,Minneci F,Mitchell J,Moutsianas L,Mueller M,Murugaesu N,Need A C,O’Donovan P,Odhams C A,Patch C,Perez-Gil D,Pereira M B,Pullinger J,Rahim T,Rendon A,Rogers T,Savage K,Sawant K,Scott R H,Siddiq A,Sieghart A,Smith S C,Sosinsky A,Stuckey A,Tanguy M,Taylor Tavares A L,Thomas E R A,Thompson S R,Tucci A,Welland M J,Williams E,Witkowska K,Wood S M,Zarowiecki M,Wood Nicholas3,Cortese Andrea38ORCID,Houlden Henry3ORCID,Tucci Arianna2,

Affiliation:

1. Department of Clinical Genetics, Great Ormond Street Hospital NHS Trust , London, WC1N 3JH , UK

2. Clinical Pharmacology, William Harvey Research Institute, School of Medicine and Dentistry, Queen Mary University of London , London, EC1M 6BQ , UK

3. Department of Neuromuscular Diseases, UCL Queen Square Institute of Neurology , London, WC1N 3BG , UK

4. Genomics England , London, E14 5AB , UK

5. Academic Department of Neurosciences and Neuroradiology, Sheffield Teaching Hospitals NHS Trust , Sheffield, S10 2JF , UK

6. Department of Clinical Neurosciences, Addenbrookes Hospital , Cambridge, CB2 0QQ , UK

7. Oxford Centre for Genomic Medicine, Oxford University Hospitals National Health Service Foundation Trust , Oxford, OX3 9DU , UK

8. Department of Brain and Behavioural Sciences, University of Pavia , Pavia, 27100 , Italy

Abstract

Abstract Spinocerebellar ataxias form a clinically and genetically heterogeneous group of neurodegenerative disorders characterized by progressive cerebellar ataxia. Their prevalence varies among populations and ethnicities. Spinocerebellar ataxia 36 is caused by a GGCCTG repeat expansion in the first intron of the NOP56 gene and is characterized by late-onset ataxia, sensorineural hearing loss and upper and lower motor neuron signs, including tongue fasciculations. Spinocerebellar ataxia 36 has been described mainly in East Asian and Western European patients and was thought to be absent in the British population. Leveraging novel bioinformatic tools to detect repeat expansions from whole-genome sequencing, we analyse the NOP56 repeat in 1257 British patients with hereditary ataxia and in 7506 unrelated controls. We identify pathogenic repeat expansions in five families (seven patients), representing the first cohort of White British descent patients with spinocerebellar ataxia 36. Employing in silico approaches using whole-genome sequencing data, we found an 87 kb shared haplotype in among the affected individuals from five families around the NOP56 repeat region, although this block was also shared between several controls, suggesting that the repeat arises on a permissive haplotype. Clinically, the patients presented with slowly progressive cerebellar ataxia with a low rate of hearing loss and variable rates of motor neuron impairment. Our findings show that the NOP56 expansion causes ataxia in the British population and that spinocerebellar ataxia 36 can be suspected in patients with a late-onset, slowly progressive ataxia, even without the findings of hearing loss and tongue fasciculation.

Funder

Medical Research Council

Barts Charity

Publisher

Oxford University Press (OUP)

Subject

Neurology,Cellular and Molecular Neuroscience,Biological Psychiatry,Psychiatry and Mental health

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