Cargando…

Genetic associations of Nrf2-encoding NFE2L2 variants with Parkinson’s disease – a multicenter study

BACKGROUND: The transcription factor Nrf2, encoded by the NFE2L2 gene, is an important regulator of the cellular protection against oxidative stress. Parkinson’s disease is a neurodegenerative disease highly associated with oxidative stress. In a previously published study, we reported associations...

Descripción completa

Detalles Bibliográficos
Autores principales: von Otter, Malin, Bergström, Petra, Quattrone, Aldo, De Marco, Elvira Valeria, Annesi, Grazia, Söderkvist, Peter, Wettinger, Stephanie Bezzina, Drozdzik, Marek, Bialecka, Monika, Nissbrandt, Hans, Klein, Christine, Nilsson, Michael, Hammarsten, Ola, Nilsson, Staffan, Zetterberg, Henrik
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4335439/
https://www.ncbi.nlm.nih.gov/pubmed/25496089
http://dx.doi.org/10.1186/s12881-014-0131-4
_version_ 1782358344621621248
author von Otter, Malin
Bergström, Petra
Quattrone, Aldo
De Marco, Elvira Valeria
Annesi, Grazia
Söderkvist, Peter
Wettinger, Stephanie Bezzina
Drozdzik, Marek
Bialecka, Monika
Nissbrandt, Hans
Klein, Christine
Nilsson, Michael
Hammarsten, Ola
Nilsson, Staffan
Zetterberg, Henrik
author_facet von Otter, Malin
Bergström, Petra
Quattrone, Aldo
De Marco, Elvira Valeria
Annesi, Grazia
Söderkvist, Peter
Wettinger, Stephanie Bezzina
Drozdzik, Marek
Bialecka, Monika
Nissbrandt, Hans
Klein, Christine
Nilsson, Michael
Hammarsten, Ola
Nilsson, Staffan
Zetterberg, Henrik
author_sort von Otter, Malin
collection PubMed
description BACKGROUND: The transcription factor Nrf2, encoded by the NFE2L2 gene, is an important regulator of the cellular protection against oxidative stress. Parkinson’s disease is a neurodegenerative disease highly associated with oxidative stress. In a previously published study, we reported associations of NFE2L2 haplotypes with risk and age at onset of idiopathic Parkinson’s disease in a Swedish discovery material and a Polish replication material. Here, we have extended the replication study and performed meta-analyses including the Polish material and four new independent European patient-control materials. Furthermore, all SNPs included in the haplotype windows were investigated individually for associations with Parkinson’s disease in meta-analyses including all six materials. METHODS: Totally 1038 patients and 1600 control subjects were studied. Based on previous NFE2L2 haplotype associations with Parkinson’s disease, five NFE2L2 tag SNPs were genotyped by allelic discrimination and three functional NFE2L2 promoter SNPs were genotyped by sequencing. The impact of individual SNPs and haplotypes on risk and age at onset of Parkinson’s disease were investigated in each material individually and in meta-analyses of the obtained results. RESULTS: Meta-analyses of NFE2L2 haplotypes showed association of haplotype GAGCAAAA, including the fully functional promoter haplotype AGC, with decreased risk (OR = 0.8 per allele, p = 0.012) and delayed onset (+1.1 years per allele, p = 0.048) of Parkinson’s disease. These results support the previously observed protective effect of this haplotype in the first study. Further, meta-analyses of the SNPs included in the haplotypes revealed four NFE2L2 SNPs associated with age at onset of Parkinson’s disease (rs7557529 G > A, −1.0 years per allele, p = 0.042; rs35652124 A > G, −1.1 years per allele, p = 0.045; rs2886161 A > G, −1.2 years per allele, p = 0.021; rs1806649 G > A, +1.2 years per allele, p = 0.029). One of these (rs35652124) is a functional SNP located in the NFE2L2 promoter. No individual SNP was associated with risk of Parkinson’s disease. CONCLUSION: Our results support the hypothesis that variation in the NFE2L2 gene, encoding a central protein in the cellular protection against oxidative stress, may contribute to the pathogenesis of Parkinson’s disease. Functional studies are now needed to explore these results further. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s12881-014-0131-4) contains supplementary material, which is available to authorized users.
format Online
Article
Text
id pubmed-4335439
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-43354392015-02-21 Genetic associations of Nrf2-encoding NFE2L2 variants with Parkinson’s disease – a multicenter study von Otter, Malin Bergström, Petra Quattrone, Aldo De Marco, Elvira Valeria Annesi, Grazia Söderkvist, Peter Wettinger, Stephanie Bezzina Drozdzik, Marek Bialecka, Monika Nissbrandt, Hans Klein, Christine Nilsson, Michael Hammarsten, Ola Nilsson, Staffan Zetterberg, Henrik BMC Med Genet Research Article BACKGROUND: The transcription factor Nrf2, encoded by the NFE2L2 gene, is an important regulator of the cellular protection against oxidative stress. Parkinson’s disease is a neurodegenerative disease highly associated with oxidative stress. In a previously published study, we reported associations of NFE2L2 haplotypes with risk and age at onset of idiopathic Parkinson’s disease in a Swedish discovery material and a Polish replication material. Here, we have extended the replication study and performed meta-analyses including the Polish material and four new independent European patient-control materials. Furthermore, all SNPs included in the haplotype windows were investigated individually for associations with Parkinson’s disease in meta-analyses including all six materials. METHODS: Totally 1038 patients and 1600 control subjects were studied. Based on previous NFE2L2 haplotype associations with Parkinson’s disease, five NFE2L2 tag SNPs were genotyped by allelic discrimination and three functional NFE2L2 promoter SNPs were genotyped by sequencing. The impact of individual SNPs and haplotypes on risk and age at onset of Parkinson’s disease were investigated in each material individually and in meta-analyses of the obtained results. RESULTS: Meta-analyses of NFE2L2 haplotypes showed association of haplotype GAGCAAAA, including the fully functional promoter haplotype AGC, with decreased risk (OR = 0.8 per allele, p = 0.012) and delayed onset (+1.1 years per allele, p = 0.048) of Parkinson’s disease. These results support the previously observed protective effect of this haplotype in the first study. Further, meta-analyses of the SNPs included in the haplotypes revealed four NFE2L2 SNPs associated with age at onset of Parkinson’s disease (rs7557529 G > A, −1.0 years per allele, p = 0.042; rs35652124 A > G, −1.1 years per allele, p = 0.045; rs2886161 A > G, −1.2 years per allele, p = 0.021; rs1806649 G > A, +1.2 years per allele, p = 0.029). One of these (rs35652124) is a functional SNP located in the NFE2L2 promoter. No individual SNP was associated with risk of Parkinson’s disease. CONCLUSION: Our results support the hypothesis that variation in the NFE2L2 gene, encoding a central protein in the cellular protection against oxidative stress, may contribute to the pathogenesis of Parkinson’s disease. Functional studies are now needed to explore these results further. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s12881-014-0131-4) contains supplementary material, which is available to authorized users. BioMed Central 2014-12-12 /pmc/articles/PMC4335439/ /pubmed/25496089 http://dx.doi.org/10.1186/s12881-014-0131-4 Text en © von Otter et al.; licensee BioMed Central. 2014 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly credited. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research Article
von Otter, Malin
Bergström, Petra
Quattrone, Aldo
De Marco, Elvira Valeria
Annesi, Grazia
Söderkvist, Peter
Wettinger, Stephanie Bezzina
Drozdzik, Marek
Bialecka, Monika
Nissbrandt, Hans
Klein, Christine
Nilsson, Michael
Hammarsten, Ola
Nilsson, Staffan
Zetterberg, Henrik
Genetic associations of Nrf2-encoding NFE2L2 variants with Parkinson’s disease – a multicenter study
title Genetic associations of Nrf2-encoding NFE2L2 variants with Parkinson’s disease – a multicenter study
title_full Genetic associations of Nrf2-encoding NFE2L2 variants with Parkinson’s disease – a multicenter study
title_fullStr Genetic associations of Nrf2-encoding NFE2L2 variants with Parkinson’s disease – a multicenter study
title_full_unstemmed Genetic associations of Nrf2-encoding NFE2L2 variants with Parkinson’s disease – a multicenter study
title_short Genetic associations of Nrf2-encoding NFE2L2 variants with Parkinson’s disease – a multicenter study
title_sort genetic associations of nrf2-encoding nfe2l2 variants with parkinson’s disease – a multicenter study
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4335439/
https://www.ncbi.nlm.nih.gov/pubmed/25496089
http://dx.doi.org/10.1186/s12881-014-0131-4
work_keys_str_mv AT vonottermalin geneticassociationsofnrf2encodingnfe2l2variantswithparkinsonsdiseaseamulticenterstudy
AT bergstrompetra geneticassociationsofnrf2encodingnfe2l2variantswithparkinsonsdiseaseamulticenterstudy
AT quattronealdo geneticassociationsofnrf2encodingnfe2l2variantswithparkinsonsdiseaseamulticenterstudy
AT demarcoelviravaleria geneticassociationsofnrf2encodingnfe2l2variantswithparkinsonsdiseaseamulticenterstudy
AT annesigrazia geneticassociationsofnrf2encodingnfe2l2variantswithparkinsonsdiseaseamulticenterstudy
AT soderkvistpeter geneticassociationsofnrf2encodingnfe2l2variantswithparkinsonsdiseaseamulticenterstudy
AT wettingerstephaniebezzina geneticassociationsofnrf2encodingnfe2l2variantswithparkinsonsdiseaseamulticenterstudy
AT drozdzikmarek geneticassociationsofnrf2encodingnfe2l2variantswithparkinsonsdiseaseamulticenterstudy
AT bialeckamonika geneticassociationsofnrf2encodingnfe2l2variantswithparkinsonsdiseaseamulticenterstudy
AT nissbrandthans geneticassociationsofnrf2encodingnfe2l2variantswithparkinsonsdiseaseamulticenterstudy
AT kleinchristine geneticassociationsofnrf2encodingnfe2l2variantswithparkinsonsdiseaseamulticenterstudy
AT nilssonmichael geneticassociationsofnrf2encodingnfe2l2variantswithparkinsonsdiseaseamulticenterstudy
AT hammarstenola geneticassociationsofnrf2encodingnfe2l2variantswithparkinsonsdiseaseamulticenterstudy
AT nilssonstaffan geneticassociationsofnrf2encodingnfe2l2variantswithparkinsonsdiseaseamulticenterstudy
AT zetterberghenrik geneticassociationsofnrf2encodingnfe2l2variantswithparkinsonsdiseaseamulticenterstudy