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Published in: neurogenetics 3/2014

Open Access 01-08-2014 | Original Article

Recessive C10orf2 mutations in a family with infantile-onset spinocerebellar ataxia, sensorimotor polyneuropathy, and myopathy

Authors: Mi-Hyun Park, Hae-Mi Woo, Young Bin Hong, Ji Hoon Park, Bo Ram Yoon, Jin-Mo Park, Jeong Hyun Yoo, Heasoo Koo, Jong-Hee Chae, Ki Wha Chung, Byung-Ok Choi, Soo Kyung Koo

Published in: Neurogenetics | Issue 3/2014

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Abstract

Recessive mutations in chromosome 10 open reading frame 2 (C10orf2) are relevant in infantile-onset spinocerebellar ataxia (IOSCA). In this study, we investigated the causative mutation in a Korean family with combined phenotypes of IOSCA, sensorimotor polyneuropathy, and myopathy. We investigated recessive mutations in a Korean family with two individuals affected by IOSCA. Causative mutations were investigated using whole exome sequencing. Electrophysiological analyses and muscle and nerve biopsies were performed, along with magnetic resonance imaging (MRI) of the brain and lower extremities. Compound heterozygous mutations c.1460C>T and c.1485-1G>A in C10orf2 were identified as causative of IOSCA. Skeletal muscle showed mitochondrial DNA (mtDNA) deletions. Both patients showed a period of normal development until 12–15 months, followed by ataxia, athetosis, hearing loss, and intellectual disability. Electrophysiological findings indicated motor and sensory polyneuropathies. Muscle biopsy revealed variations in the size and shape of myofibers with scattered, small, and angulated degenerating myofibers containing abnormal mitochondria; these observations are consistent with myopathy and may be the result of mtDNA deletions. Sural nerve biopsy revealed an axonal neuropathy. High-signal-intensity lesions in the middle cerebellar peduncles were correlated with clinical severity, and MRI of the lower legs was compatible with the hypothesis of length-dependent axonal degeneration. We identified novel compound heterozygous mutations of the C10orf2 gene as the cause of IOSCA with sensorimotor polyneuropathy and myopathy. Signs of motor neuropathy and myopathy were discovered for the first time in IOSCA patients with C10orf2 mutations. These results suggest that the clinical spectrum of IOSCA caused by C10orf2 mutations may be more variable than previously reported.
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Literature
2.
4.
go back to reference Spelbrink JN, Li FY, Tiranti V et al (2001) Human mitochondrial DNA deletions associated with mutations in the gene encoding Twinkle, a phage T7 gene 4-like protein localized in mitochondria. Nat Genet 28:223–231PubMedCrossRef Spelbrink JN, Li FY, Tiranti V et al (2001) Human mitochondrial DNA deletions associated with mutations in the gene encoding Twinkle, a phage T7 gene 4-like protein localized in mitochondria. Nat Genet 28:223–231PubMedCrossRef
5.
go back to reference Koskinen T, Sainio K, Rapola J et al (1994) Sensory neuropathy in infantile onset spinocerebellar ataxia (IOSCA). Muscle Nerve 17:509–515PubMedCrossRef Koskinen T, Sainio K, Rapola J et al (1994) Sensory neuropathy in infantile onset spinocerebellar ataxia (IOSCA). Muscle Nerve 17:509–515PubMedCrossRef
6.
go back to reference Dündar H, Ozgül RK, Yalnızoğlu D et al (2012) Identification of a novel Twinkle mutation in a family with infantile onset spinocerebellar ataxia by whole exome sequencing. Pediatr Neurol 46:172–177PubMedCrossRef Dündar H, Ozgül RK, Yalnızoğlu D et al (2012) Identification of a novel Twinkle mutation in a family with infantile onset spinocerebellar ataxia by whole exome sequencing. Pediatr Neurol 46:172–177PubMedCrossRef
7.
go back to reference Hartley JN, Booth FA, Del Bigio MR et al (2012) Novel autosomal recessive c10orf2 mutations causing infantile-onset spinocerebellar ataxia. Case Rep Pediatr 2012:303096PubMedCentralPubMed Hartley JN, Booth FA, Del Bigio MR et al (2012) Novel autosomal recessive c10orf2 mutations causing infantile-onset spinocerebellar ataxia. Case Rep Pediatr 2012:303096PubMedCentralPubMed
8.
go back to reference Nikali K, Suomalainen A, Saharinen J et al (2005) Infantile onset spinocerebellar ataxia is caused by recessive mutations in mitochondrial proteins Twinkle and Twinky. Hum Mol Genet 14:2981–2990PubMedCrossRef Nikali K, Suomalainen A, Saharinen J et al (2005) Infantile onset spinocerebellar ataxia is caused by recessive mutations in mitochondrial proteins Twinkle and Twinky. Hum Mol Genet 14:2981–2990PubMedCrossRef
9.
go back to reference Van Hove JL, Cunningham V, Rice C et al (2009) Finding Twinkle in the eyes of a 71-year-old lady: a case report and review of the genotypic and phenotypic spectrum of TWINKLE-related dominant disease. Am J Med Genet A 149:861–867CrossRef Van Hove JL, Cunningham V, Rice C et al (2009) Finding Twinkle in the eyes of a 71-year-old lady: a case report and review of the genotypic and phenotypic spectrum of TWINKLE-related dominant disease. Am J Med Genet A 149:861–867CrossRef
10.
go back to reference Hakonen AH, Isohanni P, Paetau A et al (2007) Recessive Twinkle mutations in early onset encephalopathy with mtDNA depletion. Brain 130:3032–3040PubMedCrossRef Hakonen AH, Isohanni P, Paetau A et al (2007) Recessive Twinkle mutations in early onset encephalopathy with mtDNA depletion. Brain 130:3032–3040PubMedCrossRef
11.
go back to reference Birouk N, LeGuern E, Maisonobe T et al (1998) X-linked Charcot-Marie-Tooth disease with connexin 32 mutations: clinical and electrophysiologic study. Neurology 50:1074–1082PubMedCrossRef Birouk N, LeGuern E, Maisonobe T et al (1998) X-linked Charcot-Marie-Tooth disease with connexin 32 mutations: clinical and electrophysiologic study. Neurology 50:1074–1082PubMedCrossRef
12.
go back to reference Shy ME, Blake J, Krajewski K et al (2005) Reliability and validity of the CMT neuropathy score as a measure of disability. Neurology 64:1209–1214PubMedCrossRef Shy ME, Blake J, Krajewski K et al (2005) Reliability and validity of the CMT neuropathy score as a measure of disability. Neurology 64:1209–1214PubMedCrossRef
13.
go back to reference Choi BO, Koo SK, Park MH et al (2012) Exome sequencing is an efficient tool for genetic screening of Charcot-Marie-Tooth disease. Hum Mutat 33:1610–1615PubMedCrossRef Choi BO, Koo SK, Park MH et al (2012) Exome sequencing is an efficient tool for genetic screening of Charcot-Marie-Tooth disease. Hum Mutat 33:1610–1615PubMedCrossRef
14.
go back to reference Choi BO, Park MH, Chung KW et al (2013) Clinical and histopathological study of Charcot-Marie-Tooth neuropathy with a novel S90W mutation in BSCL2. Neurogenetics 14:35–42PubMedCrossRef Choi BO, Park MH, Chung KW et al (2013) Clinical and histopathological study of Charcot-Marie-Tooth neuropathy with a novel S90W mutation in BSCL2. Neurogenetics 14:35–42PubMedCrossRef
15.
go back to reference Woo HM, Park HJ, Baek JI et al (2013) Whole-exome sequencing identifies MYO15A mutations as a cause of autosomal recessive nonsyndromic hearing loss in Korean families. BMC Med Genet 14:72PubMedCentralPubMedCrossRef Woo HM, Park HJ, Baek JI et al (2013) Whole-exome sequencing identifies MYO15A mutations as a cause of autosomal recessive nonsyndromic hearing loss in Korean families. BMC Med Genet 14:72PubMedCentralPubMedCrossRef
16.
go back to reference Hong D, Park SS, Ju YS et al (2011) TIARA: a database for accurate analysis of multiple personal genomes based on cross-technology. Nucleic Acids Res 39:D883–D888PubMedCentralPubMedCrossRef Hong D, Park SS, Ju YS et al (2011) TIARA: a database for accurate analysis of multiple personal genomes based on cross-technology. Nucleic Acids Res 39:D883–D888PubMedCentralPubMedCrossRef
17.
go back to reference Korhonen JA, Pande V, Holmlund T et al (2008) Structure-function defects of the TWINKLE linker region in progressive external ophthalmoplegia. J Mol Biol 377:691–705PubMedCrossRef Korhonen JA, Pande V, Holmlund T et al (2008) Structure-function defects of the TWINKLE linker region in progressive external ophthalmoplegia. J Mol Biol 377:691–705PubMedCrossRef
18.
go back to reference Sarzi E, Goffart S, Serre V et al (2007) Twinkle helicase (PEO1) gene mutation causes mitochondrial DNA depletion. Ann Neurol 62:579–587PubMedCrossRef Sarzi E, Goffart S, Serre V et al (2007) Twinkle helicase (PEO1) gene mutation causes mitochondrial DNA depletion. Ann Neurol 62:579–587PubMedCrossRef
19.
go back to reference Sanchez-Martinez A, Calleja M, Peralta S et al (2012) Modeling pathogenic mutations of human Twinkle in Drosophila suggests an apoptosis role in response to mitochondrial defects. PLoS One 7:e43954PubMedCentralPubMedCrossRef Sanchez-Martinez A, Calleja M, Peralta S et al (2012) Modeling pathogenic mutations of human Twinkle in Drosophila suggests an apoptosis role in response to mitochondrial defects. PLoS One 7:e43954PubMedCentralPubMedCrossRef
20.
go back to reference Suomalainen A, Majander A, Wallin M et al (1997) Autosomal dominant progressive external ophthalmoplegia with multiple deletions of mtDNA: clinical, biochemical, and molecular genetic features of the 10q-linked disease. Neurology 48:1244–1253PubMedCrossRef Suomalainen A, Majander A, Wallin M et al (1997) Autosomal dominant progressive external ophthalmoplegia with multiple deletions of mtDNA: clinical, biochemical, and molecular genetic features of the 10q-linked disease. Neurology 48:1244–1253PubMedCrossRef
21.
go back to reference Hudson G, Deschauer M, Busse K et al (2005) Sensory ataxic neuropathy due to a novel C10Orf2 mutation with probable germline mosaicism. Neurology 64:371–373PubMedCrossRef Hudson G, Deschauer M, Busse K et al (2005) Sensory ataxic neuropathy due to a novel C10Orf2 mutation with probable germline mosaicism. Neurology 64:371–373PubMedCrossRef
22.
go back to reference Lonnqvist T, Paetau A, Valanne L et al (2009) Recessive twinkle mutations cause severe epileptic encephalopathy. Brain 132:1553–1562PubMedCrossRef Lonnqvist T, Paetau A, Valanne L et al (2009) Recessive twinkle mutations cause severe epileptic encephalopathy. Brain 132:1553–1562PubMedCrossRef
23.
go back to reference Koskinen T, Santavuori P, Sainio K et al (1994) Infantile onset spinocerebellar ataxia with sensory neuropathy: a new inherited disease. J Neurol Sci 121(1):50–56PubMedCrossRef Koskinen T, Santavuori P, Sainio K et al (1994) Infantile onset spinocerebellar ataxia with sensory neuropathy: a new inherited disease. J Neurol Sci 121(1):50–56PubMedCrossRef
Metadata
Title
Recessive C10orf2 mutations in a family with infantile-onset spinocerebellar ataxia, sensorimotor polyneuropathy, and myopathy
Authors
Mi-Hyun Park
Hae-Mi Woo
Young Bin Hong
Ji Hoon Park
Bo Ram Yoon
Jin-Mo Park
Jeong Hyun Yoo
Heasoo Koo
Jong-Hee Chae
Ki Wha Chung
Byung-Ok Choi
Soo Kyung Koo
Publication date
01-08-2014
Publisher
Springer Berlin Heidelberg
Published in
Neurogenetics / Issue 3/2014
Print ISSN: 1364-6745
Electronic ISSN: 1364-6753
DOI
https://doi.org/10.1007/s10048-014-0405-1

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