Variants in the human potassium channel gene (KCNN3) are associated with migraine in a high risk genetic isolate

被引:0
|
作者
Hannah C. Cox
Rod A. Lea
Claire Bellis
Melanie Carless
Tom Dyer
John Blangero
Lyn R. Griffiths
机构
[1] Griffith University,Genomics Research Centre, Griffith Health Institute, Gold Coast Campus
[2] Southwest Foundation for Biomedical Research,Department of Genetics
来源
The Journal of Headache and Pain | 2011年 / 12卷
关键词
Migraine; Norfolk Island; Association; Population isolate; KCNN3;
D O I
暂无
中图分类号
学科分类号
摘要
The calcium-activated potassium ion channel gene (KCNN3) is located in the vicinity of the familial hemiplegic migraine type 2 locus on chromosome 1q21.3. This gene is expressed in the central nervous system and plays a role in neural excitability. Previous association studies have provided some, although not conclusive, evidence for involvement of this gene in migraine susceptibility. To elucidate KCNN3 involvement in migraine, we performed gene-wide SNP genotyping in a high-risk genetic isolate from Norfolk Island, a population descended from a small number of eighteenth century Isle of Man ‘Bounty Mutineer’ and Tahitian founders. Phenotype information was available for 377 individuals who are related through the single, well-defined Norfolk pedigree (96 were affected: 64 MA, 32 MO). A total of 85 SNPs spanning the KCNN3 gene were genotyped in a sub-sample of 285 related individuals (76 affected), all core members of the extensive Norfolk Island ‘Bounty Mutineer’ genealogy. All genotyping was performed using the Illumina BeadArray platform. The analysis was performed using the statistical program SOLAR v4.0.6 assuming an additive model of allelic effect adjusted for the effects of age and sex. Haplotype analysis was undertaken using the program HAPLOVIEW v4.0. A total of four intronic SNPs in the KCNN3 gene displayed significant association (P < 0.05) with migraine. Two SNPs, rs73532286 and rs6426929, separated by approximately 0.1 kb, displayed complete LD (r2 = 1.00, D′ = 1.00, D′ 95% CI = 0.96–1.00). In all cases, the minor allele led to a decrease in migraine risk (beta coefficient = 0.286–0.315), suggesting that common gene variants confer an increased risk of migraine in the Norfolk pedigree. This effect may be explained by founder effect in this genetic isolate. This study provides evidence for association of variants in the KCNN3 ion channel gene with migraine susceptibility in the Norfolk genetic isolate with the rarer allelic variants conferring a possible protective role. This the first comprehensive analysis of this potential candidate gene in migraine and also the first study that has utilised the unique Norfolk Island large pedigree isolate to implicate a specific migraine gene. Studies of additional variants in KCNN3 in the Norfolk pedigree are now required (e.g. polyglutamine variants) and further analyses in other population data sets are required to clarify the association of the KCNN3 gene and migraine risk in the general outbred population.
引用
收藏
页码:603 / 608
页数:5
相关论文
共 50 条
  • [1] Variants in the human potassium channel gene (KCNN3) are associated with migraine in a high risk genetic isolate
    Cox, Hannah C.
    Lea, Rod A.
    Bellis, Claire
    Carless, Melanie
    Dyer, Tom
    Blangero, John
    Griffiths, Lyn R.
    JOURNAL OF HEADACHE AND PAIN, 2011, 12 (06): : 603 - 608
  • [2] Variants in the human potassium channel gene (KCNN3) are associated with migraine in a high risk genetic isolate
    Griffiths, L. R.
    Cox, H.
    Lea, R. A.
    Bellis, C.
    Carless, M.
    Dyer, T.
    Blangero, J.
    JOURNAL OF HEADACHE AND PAIN, 2010, 11 : S69 - S69
  • [3] A highly polymorphic poly-glutamine stretch in the potassium channel KCNN3 in migraine
    Mössner, R
    Weichselbaum, A
    Marziniak, M
    Freitag, CM
    Lesch, KP
    Sommer, C
    Meyer, J
    HEADACHE, 2005, 45 (02): : 132 - 136
  • [4] Analysis of a highly polymorphic polyglutamine stretch in the potassium channel KCNN3 in migraine with and without aura
    Mössner, R
    Weichselbaum, A
    Marziniak, M
    Freitag, CM
    Benninghoff, J
    Lesch, K
    Sommer, C
    Meyer, J
    INTERNATIONAL JOURNAL OF NEUROPSYCHOPHARMACOLOGY, 2004, 7 : S302 - S302
  • [5] Association analysis of a highly polymorphic CAG Repeat in the human potassium channel gene KCNN3 and migraine susceptibility -: art. no. 32
    Curtain, R
    Sundholm, J
    Lea, R
    Ovcaric, M
    MacMillan, J
    Griffiths, L
    BMC MEDICAL GENETICS, 2005, 6
  • [6] Common variants in KCNN3 are associated with lone atrial fibrillation
    Patrick T Ellinor
    Kathryn L Lunetta
    Nicole L Glazer
    Arne Pfeufer
    Alvaro Alonso
    Mina K Chung
    Moritz F Sinner
    Paul I W de Bakker
    Martina Mueller
    Steven A Lubitz
    Ervin Fox
    Dawood Darbar
    Nicholas L Smith
    Jonathan D Smith
    Renate B Schnabel
    Elsayed Z Soliman
    Kenneth M Rice
    David R Van Wagoner
    Britt-M Beckmann
    Charlotte van Noord
    Ke Wang
    Georg B Ehret
    Jerome I Rotter
    Stanley L Hazen
    Gerhard Steinbeck
    Albert V Smith
    Lenore J Launer
    Tamara B Harris
    Seiko Makino
    Mari Nelis
    David J Milan
    Siegfried Perz
    Tõnu Esko
    Anna Köttgen
    Susanne Moebus
    Christopher Newton-Cheh
    Man Li
    Stefan Möhlenkamp
    Thomas J Wang
    W H Linda Kao
    Ramachandran S Vasan
    Markus M Nöthen
    Calum A MacRae
    Bruno H Ch Stricker
    Albert Hofman
    André G Uitterlinden
    Daniel Levy
    Eric Boerwinkle
    Andres Metspalu
    Eric J Topol
    Nature Genetics, 2010, 42 : 240 - 244
  • [7] Common variants in KCNN3 are associated with lone atrial fibrillation
    Ellinor, Patrick T.
    Lunetta, Kathryn L.
    Glazer, Nicole L.
    Pfeufer, Arne
    Alonso, Alvaro
    Chung, Mina K.
    Sinner, Moritz F.
    de Bakker, Paul I. W.
    Mueller, Martina
    Lubitz, Steven A.
    Fox, Ervin
    Darbar, Dawood
    Smith, Nicholas L.
    Smith, Jonathan D.
    Schnabel, Renate B.
    Soliman, Elsayed Z.
    Rice, Kenneth M.
    Van Wagoner, David R.
    Beckmann, Britt-M
    van Noord, Charlotte
    Wang, Ke
    Ehret, Georg B.
    Rotter, Jerome I.
    Hazen, Stanley L.
    Steinbeck, Gerhard
    Smith, Albert V.
    Launer, Lenore J.
    Harris, Tamara B.
    Makino, Seiko
    Nelis, Mari
    Milan, David J.
    Perz, Siegfried
    Esko, Tonu
    Koettgen, Anna
    Moebus, Susanne
    Newton-Cheh, Christopher
    Li, Man
    Moehlenkamp, Stefan
    Wang, Thomas J.
    Kao, W. H. Linda
    Vasan, Ramachandran S.
    Noethen, Markus M.
    MacRae, Calum A.
    Stricker, Bruno H. Ch
    Hofman, Albert
    Uitterlinden, Andre G.
    Levy, Daniel
    Boerwinkle, Eric
    Metspalu, Andres
    Topol, Eric J.
    NATURE GENETICS, 2010, 42 (03) : 240 - U36
  • [8] No evidence for involvement of KCNN3 (hSKCa3) potassium channel gene in familial and isolated cases of schizophrenia
    Bonnet-Brilhault, F
    Laurent, C
    Campion, D
    Thibaut, F
    Lafargue, C
    Charbonnier, F
    Deleuze, JF
    Ménard, JF
    Jay, M
    Petit, M
    Frebourg, T
    Mallet, J
    EUROPEAN JOURNAL OF HUMAN GENETICS, 1999, 7 (02) : 247 - 250
  • [9] No evidence for involvement of KCNN3 (hSKCa3) potassium channel gene in familial and isolated cases of schizophrenia
    Frédérique Bonnet-Brilhault
    Claudine Laurent
    Dominique Campion
    Florence Thibaut
    Carole Lafargue
    Françoise Charbonnier
    Jean-François Deleuze
    Jean-François Ménard
    Maurice Jay
    Michel Petit
    Thierry Frebourg
    Jacques Mallet
    European Journal of Human Genetics, 1999, 7 : 247 - 250
  • [10] Genomic organization and promoter analysis of human KCNN3 gene
    Sun, GF
    Tomita, H
    Shakkottai, VG
    Gargus, JJ
    JOURNAL OF HUMAN GENETICS, 2001, 46 (08) : 463 - 470