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Heritability Enrichment Implicates Microglia in Parkinson’s Disease Pathogenesis

OBJECTIVE: Understanding how different parts of the immune system contribute to pathogenesis in Parkinson’s disease is a burning challenge with important therapeutic implications. We studied enrichment of common variant heritability for Parkinson’s disease stratified by immune and brain cell types....

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Autores principales: Andersen, Maren Stolp, Bandres-Ciga, Sara, Reynolds, Regina H., Hardy, John, Ryten, Mina, Krohn, Lynne, Gan-Or, Ziv, Holtman, Inge R., Pihlstrøm, Lasse
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9017316/
https://www.ncbi.nlm.nih.gov/pubmed/33502028
http://dx.doi.org/10.1002/ana.26032
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author Andersen, Maren Stolp
Bandres-Ciga, Sara
Reynolds, Regina H.
Hardy, John
Ryten, Mina
Krohn, Lynne
Gan-Or, Ziv
Holtman, Inge R.
Pihlstrøm, Lasse
author_facet Andersen, Maren Stolp
Bandres-Ciga, Sara
Reynolds, Regina H.
Hardy, John
Ryten, Mina
Krohn, Lynne
Gan-Or, Ziv
Holtman, Inge R.
Pihlstrøm, Lasse
author_sort Andersen, Maren Stolp
collection PubMed
description OBJECTIVE: Understanding how different parts of the immune system contribute to pathogenesis in Parkinson’s disease is a burning challenge with important therapeutic implications. We studied enrichment of common variant heritability for Parkinson’s disease stratified by immune and brain cell types. METHODS: We used summary statistics from the most recent meta-analysis of genomewide association studies in Parkinson’s disease and partitioned heritability using linkage disequilibrium score regression, stratified for specific cell types, as defined by open chromatin regions. We also validated enrichment results using a polygenic risk score approach and intersected disease-associated variants with epigenetic data and expression quantitative loci to nominate and explore a putative microglial locus. RESULTS: We found significant enrichment of Parkinson’s disease risk heritability in open chromatin regions of microglia and monocytes. Genomic annotations overlapped substantially between these 2 cell types, and only the enrichment signal for microglia remained significant in a joint model. We present evidence suggesting P2RY12, a key microglial gene and target for the antithrombotic agent clopidogrel, as the likely driver of a significant Parkinson’s disease association signal on chromosome 3. INTERPRETATION: Our results provide further support for the importance of immune mechanisms in Parkinson’s disease pathogenesis, highlight microglial dysregulation as a contributing etiological factor, and nominate a targetable microglial gene candidate as a pathogenic player. Immune processes can be modulated by therapy, with potentially important clinical implications for future treatment in Parkinson’s disease.
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spelling pubmed-90173162022-04-19 Heritability Enrichment Implicates Microglia in Parkinson’s Disease Pathogenesis Andersen, Maren Stolp Bandres-Ciga, Sara Reynolds, Regina H. Hardy, John Ryten, Mina Krohn, Lynne Gan-Or, Ziv Holtman, Inge R. Pihlstrøm, Lasse Ann Neurol Article OBJECTIVE: Understanding how different parts of the immune system contribute to pathogenesis in Parkinson’s disease is a burning challenge with important therapeutic implications. We studied enrichment of common variant heritability for Parkinson’s disease stratified by immune and brain cell types. METHODS: We used summary statistics from the most recent meta-analysis of genomewide association studies in Parkinson’s disease and partitioned heritability using linkage disequilibrium score regression, stratified for specific cell types, as defined by open chromatin regions. We also validated enrichment results using a polygenic risk score approach and intersected disease-associated variants with epigenetic data and expression quantitative loci to nominate and explore a putative microglial locus. RESULTS: We found significant enrichment of Parkinson’s disease risk heritability in open chromatin regions of microglia and monocytes. Genomic annotations overlapped substantially between these 2 cell types, and only the enrichment signal for microglia remained significant in a joint model. We present evidence suggesting P2RY12, a key microglial gene and target for the antithrombotic agent clopidogrel, as the likely driver of a significant Parkinson’s disease association signal on chromosome 3. INTERPRETATION: Our results provide further support for the importance of immune mechanisms in Parkinson’s disease pathogenesis, highlight microglial dysregulation as a contributing etiological factor, and nominate a targetable microglial gene candidate as a pathogenic player. Immune processes can be modulated by therapy, with potentially important clinical implications for future treatment in Parkinson’s disease. 2021-05 2021-03-04 /pmc/articles/PMC9017316/ /pubmed/33502028 http://dx.doi.org/10.1002/ana.26032 Text en https://creativecommons.org/licenses/by-nc/4.0/This is an open access article under the terms of the Creative Commons Attribution-NonCommercial (https://creativecommons.org/licenses/by-nc/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Article
Andersen, Maren Stolp
Bandres-Ciga, Sara
Reynolds, Regina H.
Hardy, John
Ryten, Mina
Krohn, Lynne
Gan-Or, Ziv
Holtman, Inge R.
Pihlstrøm, Lasse
Heritability Enrichment Implicates Microglia in Parkinson’s Disease Pathogenesis
title Heritability Enrichment Implicates Microglia in Parkinson’s Disease Pathogenesis
title_full Heritability Enrichment Implicates Microglia in Parkinson’s Disease Pathogenesis
title_fullStr Heritability Enrichment Implicates Microglia in Parkinson’s Disease Pathogenesis
title_full_unstemmed Heritability Enrichment Implicates Microglia in Parkinson’s Disease Pathogenesis
title_short Heritability Enrichment Implicates Microglia in Parkinson’s Disease Pathogenesis
title_sort heritability enrichment implicates microglia in parkinson’s disease pathogenesis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9017316/
https://www.ncbi.nlm.nih.gov/pubmed/33502028
http://dx.doi.org/10.1002/ana.26032
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