Genomic investigation of α-synuclein multiplication and parkinsonism

被引:252
作者
Ross, Owen A.
Braithwaite, Adam T.
Skipper, Lisa M.
Kachergus, Jennifer
Hulihan, Mary M.
Middleton, Frank A. [2 ]
Nishioka, Kenya [3 ]
Fuchs, Julia [4 ]
Gasser, Thomas [4 ]
Maraganore, Demetrius M. [5 ]
Adler, Charles H. . [6 ]
Larvor, Lydie [7 ]
Chartier-Harlin, Marie-Christine [7 ]
Nilsson, Christer [8 ]
Langston, J. William [9 ,10 ]
Gwinn, Katrina [11 ]
Hattori, Nobutaka
Farrer, Matthew J. [1 ]
机构
[1] Mayo Clin, Morris K Udall Parkinson Dis Res Ctr Excellence, Dept Neurosci, Coll Med,Div Neurogenet, Jacksonville, FL 32224 USA
[2] SUNY Upstate Med Univ, Microarray Core Facil, Ctr Neuropsychiatr Genet, Syracuse, NY USA
[3] Juntendo Univ, Sch Med, Dept Neurol, Tokyo 113, Japan
[4] Univ Tubingen, Hertie Inst Clin Brain Res, Ctr Neurol, Dept Neurodegenerat Dis, Tubingen, Germany
[5] Mayo Clin, Coll Med, Dept Neurol, Rochester, MN USA
[6] Mayo Clin, Coll Med, Dept Neurol, Scottsdale, AZ USA
[7] IRCL, MENRT, EA2683, Lille, France
[8] Lund Univ, Dept Clin Med, Div Geriatr Psychiat, Lund, Sweden
[9] Parkinson Inst, Sunnyvale, CA USA
[10] Ctr Clin, Sunnyvale, CA USA
[11] Natl Inst Neurol Disorders & Stroke, NIH, Bethesda, MD USA
关键词
D O I
10.1002/ana.21380
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Objective: Copy number variation is a common polymorphic phenomenon within the human genome. Although the majority of these events are non-deleterious they can also be highly pathogenic. Herein we characterize five families with parkinsonism that have been identified to harbor multiplication of the chromosomal 4q21 locus containing the a-synuclein gene (SNCA). Methods: A methodological approach using fluorescent in situ hybridization and Affymetrix (Santa Clara, CA) 250K SNP microarrays was used to characterize the multiplication in each family and to identify the genes encoded within the region. The telomeric and centromeric breakpoints of each family were further narrowed using semiquantitative polymerase chain reaction with microsatellite markers and then screened for transposable repeat elements. Results: The severity of clinical presentation is correlated with SNCA dosage and does not appear to be overtly affected by the presence of other genes in the multiplicated region. With the exception of the Lister kindred, in each family the multiplication event appears de novo. The type and position of Alu/LINE repeats are also different at each breakpoint. Microsatellite analysis demonstrates two genomic mechanisms are responsible for chromosome 4q21 multiplications, including both SNCA duplication and recombination. Interpretation: SNCA dosage is responsible for parkinsonism, autonomic dysfunction, and dementia observed within each family. We hypothesize dysregulated expression of wild-type (alpha-synuclein results in parkinsonism and may explain the recent association of common SNCA variants in sporadic Parkinson's disease. SNCA genomic duplication results from intraallelic (segmental duplication) or interallelic recombination with unequal crossing over, whereas both mechanisms appear to be required for genomic SNCA triplication.
引用
收藏
页码:743 / 750
页数:8
相关论文
共 44 条
  • [1] α-Synuclein gene duplication is present in sporadic Parkinson disease
    Ahn, T. -B.
    Kim, S. Y.
    Kim, J. Y.
    Park, S. -S.
    Lee, D. S.
    Min, H. J.
    Kim, Y. K.
    Kim, S. E.
    Kim, J. -M.
    Kim, H. -J.
    Cho, J.
    Jeon, B. S.
    [J]. NEUROLOGY, 2008, 70 (01) : 43 - 49
  • [2] An Alu transposition model for the origin and expansion of human segmental duplications
    Bailey, JA
    Liu, G
    Eichler, EE
    [J]. AMERICAN JOURNAL OF HUMAN GENETICS, 2003, 73 (04) : 823 - 834
  • [3] Alu repeats and human genomic diversity
    Batzer, MA
    Deininger, PL
    [J]. NATURE REVIEWS GENETICS, 2002, 3 (05) : 370 - 379
  • [4] α-synuclein locus duplication as a cause of familial Parkinson's disease
    Chartier-Harlin, MC
    Kachergus, J
    Roumier, C
    Mouroux, V
    Douay, X
    Lincoln, S
    Levecque, C
    Larvor, L
    Andrieux, J
    Hulihan, M
    Waucquier, N
    Defebvre, L
    Amouyel, P
    Farrer, M
    Destée, A
    [J]. LANCET, 2004, 364 (9440) : 1167 - 1169
  • [5] Effect of allelic variation at the NACP-Rep1 repeat upstream of the α-synuclein gene (SNCA) on transcription in a cell culture luciferase reporter system
    Chiba-Falek, O
    Nussbaum, RL
    [J]. HUMAN MOLECULAR GENETICS, 2001, 10 (26) : 3101 - 3109
  • [6] The ups and downs of α-synuclein mRNA expression
    Daechsel, Justus C.
    Lincoln, Sarah J.
    Gonzalez, John
    Ross, Owen A.
    Dickson, Dennis W.
    Farrer, Matthew J.
    [J]. MOVEMENT DISORDERS, 2007, 22 (02) : 293 - 295
  • [7] Comparison of kindreds with parkinsonism and α-synuclein genomic multiplications
    Farrer, M
    Kachergus, J
    Forno, L
    Lincoln, S
    Wang, DS
    Hulihan, M
    Maraganore, D
    Gwinn-Hardy, K
    Wszolek, Z
    Dickson, D
    Langston, JW
    [J]. ANNALS OF NEUROLOGY, 2004, 55 (02) : 174 - 179
  • [8] α-synuclein gene haplotypes are associated with Parkinson's disease
    Farrer, M
    Maraganore, DM
    Lockhart, P
    Singleton, A
    Lesnick, TG
    de Andrade, M
    West, A
    de Silva, R
    Hardy, J
    Hernandez, D
    [J]. HUMAN MOLECULAR GENETICS, 2001, 10 (17) : 1847 - 1851
  • [9] Genetics of Parkinson disease: paradigm shifts and future prospects
    Farrer, MJ
    [J]. NATURE REVIEWS GENETICS, 2006, 7 (04) : 306 - 318
  • [10] VISTA: computational tools for comparative genomics
    Frazer, KA
    Pachter, L
    Poliakov, A
    Rubin, EM
    Dubchak, I
    [J]. NUCLEIC ACIDS RESEARCH, 2004, 32 : W273 - W279