Cargando…

Identification of genetic risk loci and prioritization of genes and pathways for myasthenia gravis: a genome-wide association study

Myasthenia gravis is a chronic autoimmune disease characterized by autoantibody-mediated interference of signal transmission across the neuromuscular junction. We performed a genome-wide association study (GWAS) involving 1,873 patients diagnosed with acetylcholine receptor antibody-positive myasthe...

Descripción completa

Detalles Bibliográficos
Autores principales: Chia, Ruth, Saez-Atienzar, Sara, Murphy, Natalie, Chiò, Adriano, Blauwendraat, Cornelis, Roda, Ricardo H., Tienari, Pentti J., Kaminski, Henry J., Ricciardi, Roberta, Guida, Melania, De Rosa, Anna, Petrucci, Loredana, Evoli, Amelia, Provenzano, Carlo, Drachman, Daniel B., Traynor, Bryan J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8812681/
https://www.ncbi.nlm.nih.gov/pubmed/35074870
http://dx.doi.org/10.1073/pnas.2108672119
_version_ 1784644705998340096
author Chia, Ruth
Saez-Atienzar, Sara
Murphy, Natalie
Chiò, Adriano
Blauwendraat, Cornelis
Roda, Ricardo H.
Tienari, Pentti J.
Kaminski, Henry J.
Ricciardi, Roberta
Guida, Melania
De Rosa, Anna
Petrucci, Loredana
Evoli, Amelia
Provenzano, Carlo
Drachman, Daniel B.
Traynor, Bryan J.
author_facet Chia, Ruth
Saez-Atienzar, Sara
Murphy, Natalie
Chiò, Adriano
Blauwendraat, Cornelis
Roda, Ricardo H.
Tienari, Pentti J.
Kaminski, Henry J.
Ricciardi, Roberta
Guida, Melania
De Rosa, Anna
Petrucci, Loredana
Evoli, Amelia
Provenzano, Carlo
Drachman, Daniel B.
Traynor, Bryan J.
author_sort Chia, Ruth
collection PubMed
description Myasthenia gravis is a chronic autoimmune disease characterized by autoantibody-mediated interference of signal transmission across the neuromuscular junction. We performed a genome-wide association study (GWAS) involving 1,873 patients diagnosed with acetylcholine receptor antibody-positive myasthenia gravis and 36,370 healthy individuals to identify disease-associated genetic risk loci. Replication of the discovered loci was attempted in an independent cohort from the UK Biobank. We also performed a transcriptome-wide association study (TWAS) using expression data from skeletal muscle, whole blood, and tibial nerve to test the effects of disease-associated polymorphisms on gene expression. We discovered two signals in the genes encoding acetylcholine receptor subunits that are the most common antigenic target of the autoantibodies: a GWAS signal within the cholinergic receptor nicotinic alpha 1 subunit (CHRNA1) gene and a TWAS association with the cholinergic receptor nicotinic beta 1 subunit (CHRNB1) gene in normal skeletal muscle. Two other loci were discovered on 10p14 and 11q21, and the previous association signals at PTPN22, HLA-DQA1/HLA-B, and TNFRSF11A were confirmed. Subgroup analyses demonstrate that early- and late-onset cases have different genetic risk factors. Genetic correlation analysis confirmed a genetic link between myasthenia gravis and other autoimmune diseases, such as hypothyroidism, rheumatoid arthritis, multiple sclerosis, and type 1 diabetes. Finally, we applied Priority Index analysis to identify potentially druggable genes/proteins and pathways. This study provides insight into the genetic architecture underlying myasthenia gravis and demonstrates that genetic factors within the loci encoding acetylcholine receptor subunits contribute to its pathogenesis.
format Online
Article
Text
id pubmed-8812681
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher National Academy of Sciences
record_format MEDLINE/PubMed
spelling pubmed-88126812022-02-16 Identification of genetic risk loci and prioritization of genes and pathways for myasthenia gravis: a genome-wide association study Chia, Ruth Saez-Atienzar, Sara Murphy, Natalie Chiò, Adriano Blauwendraat, Cornelis Roda, Ricardo H. Tienari, Pentti J. Kaminski, Henry J. Ricciardi, Roberta Guida, Melania De Rosa, Anna Petrucci, Loredana Evoli, Amelia Provenzano, Carlo Drachman, Daniel B. Traynor, Bryan J. Proc Natl Acad Sci U S A Biological Sciences Myasthenia gravis is a chronic autoimmune disease characterized by autoantibody-mediated interference of signal transmission across the neuromuscular junction. We performed a genome-wide association study (GWAS) involving 1,873 patients diagnosed with acetylcholine receptor antibody-positive myasthenia gravis and 36,370 healthy individuals to identify disease-associated genetic risk loci. Replication of the discovered loci was attempted in an independent cohort from the UK Biobank. We also performed a transcriptome-wide association study (TWAS) using expression data from skeletal muscle, whole blood, and tibial nerve to test the effects of disease-associated polymorphisms on gene expression. We discovered two signals in the genes encoding acetylcholine receptor subunits that are the most common antigenic target of the autoantibodies: a GWAS signal within the cholinergic receptor nicotinic alpha 1 subunit (CHRNA1) gene and a TWAS association with the cholinergic receptor nicotinic beta 1 subunit (CHRNB1) gene in normal skeletal muscle. Two other loci were discovered on 10p14 and 11q21, and the previous association signals at PTPN22, HLA-DQA1/HLA-B, and TNFRSF11A were confirmed. Subgroup analyses demonstrate that early- and late-onset cases have different genetic risk factors. Genetic correlation analysis confirmed a genetic link between myasthenia gravis and other autoimmune diseases, such as hypothyroidism, rheumatoid arthritis, multiple sclerosis, and type 1 diabetes. Finally, we applied Priority Index analysis to identify potentially druggable genes/proteins and pathways. This study provides insight into the genetic architecture underlying myasthenia gravis and demonstrates that genetic factors within the loci encoding acetylcholine receptor subunits contribute to its pathogenesis. National Academy of Sciences 2022-01-24 2022-02-01 /pmc/articles/PMC8812681/ /pubmed/35074870 http://dx.doi.org/10.1073/pnas.2108672119 Text en Copyright © 2022 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Chia, Ruth
Saez-Atienzar, Sara
Murphy, Natalie
Chiò, Adriano
Blauwendraat, Cornelis
Roda, Ricardo H.
Tienari, Pentti J.
Kaminski, Henry J.
Ricciardi, Roberta
Guida, Melania
De Rosa, Anna
Petrucci, Loredana
Evoli, Amelia
Provenzano, Carlo
Drachman, Daniel B.
Traynor, Bryan J.
Identification of genetic risk loci and prioritization of genes and pathways for myasthenia gravis: a genome-wide association study
title Identification of genetic risk loci and prioritization of genes and pathways for myasthenia gravis: a genome-wide association study
title_full Identification of genetic risk loci and prioritization of genes and pathways for myasthenia gravis: a genome-wide association study
title_fullStr Identification of genetic risk loci and prioritization of genes and pathways for myasthenia gravis: a genome-wide association study
title_full_unstemmed Identification of genetic risk loci and prioritization of genes and pathways for myasthenia gravis: a genome-wide association study
title_short Identification of genetic risk loci and prioritization of genes and pathways for myasthenia gravis: a genome-wide association study
title_sort identification of genetic risk loci and prioritization of genes and pathways for myasthenia gravis: a genome-wide association study
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8812681/
https://www.ncbi.nlm.nih.gov/pubmed/35074870
http://dx.doi.org/10.1073/pnas.2108672119
work_keys_str_mv AT chiaruth identificationofgeneticrisklociandprioritizationofgenesandpathwaysformyastheniagravisagenomewideassociationstudy
AT saezatienzarsara identificationofgeneticrisklociandprioritizationofgenesandpathwaysformyastheniagravisagenomewideassociationstudy
AT murphynatalie identificationofgeneticrisklociandprioritizationofgenesandpathwaysformyastheniagravisagenomewideassociationstudy
AT chioadriano identificationofgeneticrisklociandprioritizationofgenesandpathwaysformyastheniagravisagenomewideassociationstudy
AT blauwendraatcornelis identificationofgeneticrisklociandprioritizationofgenesandpathwaysformyastheniagravisagenomewideassociationstudy
AT identificationofgeneticrisklociandprioritizationofgenesandpathwaysformyastheniagravisagenomewideassociationstudy
AT rodaricardoh identificationofgeneticrisklociandprioritizationofgenesandpathwaysformyastheniagravisagenomewideassociationstudy
AT tienaripenttij identificationofgeneticrisklociandprioritizationofgenesandpathwaysformyastheniagravisagenomewideassociationstudy
AT kaminskihenryj identificationofgeneticrisklociandprioritizationofgenesandpathwaysformyastheniagravisagenomewideassociationstudy
AT ricciardiroberta identificationofgeneticrisklociandprioritizationofgenesandpathwaysformyastheniagravisagenomewideassociationstudy
AT guidamelania identificationofgeneticrisklociandprioritizationofgenesandpathwaysformyastheniagravisagenomewideassociationstudy
AT derosaanna identificationofgeneticrisklociandprioritizationofgenesandpathwaysformyastheniagravisagenomewideassociationstudy
AT petrucciloredana identificationofgeneticrisklociandprioritizationofgenesandpathwaysformyastheniagravisagenomewideassociationstudy
AT evoliamelia identificationofgeneticrisklociandprioritizationofgenesandpathwaysformyastheniagravisagenomewideassociationstudy
AT provenzanocarlo identificationofgeneticrisklociandprioritizationofgenesandpathwaysformyastheniagravisagenomewideassociationstudy
AT drachmandanielb identificationofgeneticrisklociandprioritizationofgenesandpathwaysformyastheniagravisagenomewideassociationstudy
AT traynorbryanj identificationofgeneticrisklociandprioritizationofgenesandpathwaysformyastheniagravisagenomewideassociationstudy