Unstable insertion in the 5′ flanking region of the cystatin B gene is the most common mutation in progressive myoclonus epilepsy type 1, EPM1

被引:0
|
作者
Ronald G. Lafreniére
Daniel L. Rochefort
Nathalie Chrétien
Johanna M. Rommens
Jeffrey I. Cochius
Reetta Kälviäinen
Unto Nousiainen
George Patry
Kevin Farrell
Birgitta Söderfeldt
Antonio Federico
Bradford R. Hale
Otto Hernandez Cossio
Troels Sørensen
Marc A. Pouliot
Tomasz Kmiec
Peter Uldall
József Janszky
Michael R. Pranzatelli
Frederick Andermann
Eva Andermann
Guy A. Rouleau
机构
[1] Montreal General Hosp Research Inst,Centre for Research in Neurosdence, McGill Univ and Dept of Neurology, Room L12
[2] The Hosp for Sick Children,144
[3] Univ of Toronto,Dept of Genetics
[4] Norfolk and Norwich Hosp,Dept of Neurology
[5] Kuopio Univ Hosp,Dept of Neurology
[6] Vaajasalo Hosp,Dept of Clinical Neurophysiology
[7] Univ of Kuopio,Dept of Neurology
[8] Laval Univ,Dept of Paediatrics
[9] Univ of British Columbia,Dept of Neurology
[10] Univ Hosp,Dept of Neurology
[11] Inst of Neurological Sciences,Centro de Neurologia e Neurocirugia
[12] Univ of Siena,Dept of Neurology
[13] Dept of Pediatric Neurology,Dept of Neurology
[14] Hosp Santa Casa de Misericordia,Child Dept
[15] Hvidovre Hosp,Dept of Neurology
[16] Univ of Copenhagen,Depts of Neurology, Paediatrics and Pharmacology
[17] The Children's Memorial Health Inst,Depts of Neurology and Neurosurgery and Pediatrics
[18] Dianalund Epilepsy Hosp,Depts of Neurology and Neurosurgery and Human Genetics
[19] Orszagos Neurologiai es Pszichiatrial Intezet,undefined
[20] The George Washington Univ,undefined
[21] McGill Univ,undefined
[22] and Epilepsy Service,undefined
[23] Montreal Neurological Inst and Hosp,undefined
[24] McGill Univ,undefined
[25] and Neurogenetics Unit,undefined
[26] Montreal Neurological Inst and Hosp,undefined
来源
Nature Genetics | 1997年 / 15卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Progressive myoclonus epilepsy type 1 (EPM1, also known as Unverricht-Lundborg disease) is an autosomal recessive disorder characterized by progressively worsening myoclonic jerks, frequent generalized tonic-clonic seizures, and a slowly progressive decline in cognition1. Recently, two mutations in the cystatin B gene (also known as stefin B, STFB) mapping to 21q22.3 have been implicated in the EPM1 phenotype: a G→C substitution in the last nucleotide of intron 1 that was predicted to cause a splicing defect in one family, and a C→T substitution that would change an Arg codon (CGA) to a stop codon (TGA) at amino acid position 68, resulting in a truncated cystatin B protein in two other families2. A fourth family showed undetectable amounts of STFB mRNA by northern blot analysis in an affected individual. We present haplotype and mutational analyses of our collection of 20 unrelated EPM1 patients and families from different ethnic groups. We identify four different mutations, the most common of which consists of an unstable ∼600–900 bp insertion which is resistant to PCR amplification. This insertion maps to a 12-bp polymorphic tandem repeat located in the 5' flanking region of the STFB gene, in the region of the promoter. The size of the insertion varies between different EPM1 chromosomes sharing a common haplotype and a common origin, suggesting some level of meiotic instability over the course of many generations. This dynamic mutation, which appears distinct from conventional trinucleotide repeat expansions, may arise via a novel mechanism related to the instability of tandemly repeated sequences.
引用
收藏
页码:298 / 302
页数:4
相关论文
共 50 条
  • [31] EARLY ACTIVATION OF MICROGLIA HAS A CENTRAL ROLE IN THE DISEASE PATHOGENESIS OF PROGRESSIVE MYOCLONUS EPILEPSY, EPM1
    Korber, I.
    Joensuu, T.
    Lehesjoki, A. -E.
    Kopra, O.
    GLIA, 2013, 61 : S76 - S76
  • [32] Progressive myoclonus epilepsy EPM1: A model for genetically determined susceptibility to seizure-induced neurodegeneration
    Lehesjoki, A.
    EPILEPSIA, 2006, 47 : 261 - 262
  • [33] EARLY ACTIVATION OF MICROGLIA HAS A CENTRAL ROLE IN THE DISEASE PATHOGENESIS OF PROGRESSIVE MYOCLONUS EPILEPSY, EPM1
    Korber, I
    Joensuu, T.
    Lehesjoki, A. E.
    Kopra, O.
    GLIA, 2011, 59 : S76 - S76
  • [34] Early activation of microglia plays a central role in the disease pathogenesis of progressive myoclonus epilepsy, EPM1
    Korber, I.
    Joensuu, T.
    Katayama, S.
    Hakala, P.
    Einarsdottir, E.
    Kere, J.
    Lehesjoki, A. -E.
    GLIA, 2015, 63 : E169 - E169
  • [35] Biochemical and immunohistochemical analysis of cystatin B and cathepsins B, H, L and S in progressive myoclonus epilepsy, EPM1.
    Rinne, R
    Alakurtti, K
    Virtaneva, K
    Saukko, P
    Rinne, A
    Lehesjoki, A
    EPILEPSIA, 1999, 40 : 265 - 265
  • [36] Microglia-mediated synaptic pruning in the Cstb-/- mouse model for progressive myoclonus epilepsy, EPM1
    Tegelberg, S.
    Hakala, P.
    Joensuu, T.
    Lehesjoki, A-E.
    GLIA, 2017, 65 : E313 - E313
  • [37] Apoptosis caused by cathepsins does not require Bid signaling in an in vivo model of progressive myoclonus epilepsy (EPM1)
    M K Houseweart
    A Vilaythong
    X-M Yin
    B Turk
    J L Noebels
    R M Myers
    Cell Death & Differentiation, 2003, 10 : 1329 - 1335
  • [38] Apoptosis caused by cathepsins does not require Bid signaling in an in vivo model of progressive myoclonus epilepsy (EPM1)
    Houseweart, MK
    Vilaythong, A
    Yin, XM
    Turk, B
    Noebels, JL
    Myers, RM
    CELL DEATH AND DIFFERENTIATION, 2003, 10 (12): : 1329 - 1335
  • [39] Microglia mediated synaptic pruning is altered in the Cstb-/- mouse model for progressive myoclonus epilepsy, EPM1
    Tegelberg, S.
    Kuosa, E.
    Kallo, H.
    Hakala, P.
    Joensuu, T.
    Lehesjoki, A. -E.
    GLIA, 2019, 67 : E350 - E351
  • [40] A 405-KB COSMID CONTIG AND HINDIII RESTRICTION MAP OF THE PROGRESSIVE MYOCLONUS EPILEPSY TYPE-1 (EPM1) CANDIDATE REGION IN 21Q22.3
    LAFRENIERE, RG
    DEJONG, PJ
    ROULEAU, GA
    GENOMICS, 1995, 29 (01) : 288 - 290