Publication:
Genetic analysis of amyotrophic lateral sclerosis identifies contributing pathways and cell types.

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Date

2020-11-20

Authors

Saez-Atienzar, Sara
Bandres-Ciga, Sara
Langston, Rebekah G
Kim, Jonggeol J
Choi, Shing Wan
Reynolds, Regina H
Abramzon, Yevgeniya
Dewan, Ramita
Ahmed, Sarah
Landers, John E

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Public Library of Science
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Abstract

Despite the considerable progress in unraveling the genetic causes of amyotrophic lateral sclerosis (ALS), we do not fully understand the molecular mechanisms underlying the disease. We analyzed genome-wide data involving 78,500 individuals using a polygenic risk score approach to identify the biological pathways and cell types involved in ALS. This data-driven approach identified multiple aspects of the biology underlying the disease that resolved into broader themes, namely, neuron projection morphogenesis, membrane trafficking, and signal transduction mediated by ribonucleotides. We also found that genomic risk in ALS maps consistently to GABAergic interneurons and oligodendrocytes, as confirmed in human single-nucleus RNA-seq data. Using two-sample Mendelian randomization, we nominated six differentially expressed genes (ATG16L2, ACSL5, MAP1LC3A, MAPKAPK3, PLXNB2, and SCFD1) within the significant pathways as relevant to ALS. We conclude that the disparate genetic etiologies of this fatal neurological disease converge on a smaller number of final common pathways and cell types.

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MeSH Terms

MAP-kinase-activated kinase 3
Genetic Risk Score
Amyotrophic Lateral Sclerosis
Ribonucleotides
Mendelian Randomization Analysis
RNA-Seq
Signal Transduction
Genomics
Morphogenesis
Oligodendroglia

DeCS Terms

Análisis de la aleatorización
Mendeliana
Esclerosis amiotrófica lateral
Fosfotransferasas
Genómica
Morfogénesis
Oligodendroglía
Puntuación de riesgo genético
RNA-Seq
Ribonucleótidos
Transducción de señal

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Keywords

Amyotrophic Lateral Sclerosis, Genetic Testing, Genome-Wide Association Study, Humans, Polymorphism, Single Nucleotide

Citation

Saez-Atienzar S, Bandres-Ciga S, Langston RG, Kim JJ, Choi SW, Reynolds RH, et al. Genetic analysis of amyotrophic lateral sclerosis identifies contributing pathways and cell types. Sci Adv. 2021 Jan 15;7(3):eabd9036.