Rare and common genetic determinants of mitochondrial function determine severity but not risk of amyotrophic lateral sclerosis

肌萎缩侧索硬化 单倍型 生物 线粒体DNA 遗传学 C9orf72 线粒体 神经退行性变 孟德尔随机化 疾病 遗传倾向 等位基因 生物信息学 医学 基因 内科学 基因型 三核苷酸重复扩增 遗传变异
作者
Calum Harvey,Marcel Weinreich,James Lee,Allan C. Shaw,Laura Ferraiuolo,Heather Mortiboys,Sai Zhang,Paul J. Hop,Ramona A.J. Zwamborn,Kristel van Eijk,Thomas Julian,Tobias Moll,Alfredo Iacoangeli,Ahmad Al Khleifat,John P. Quinn,Abigail L. Pfaff,Sulev Kõks,Joanna Poulton,Stephanie L. Battle,Dan E. Arking,M Snyder,Jan H. Veldink,Kevin P. Kenna,Pamela J. Shaw,Johnathan Cooper‐Knock
出处
期刊:Heliyon [Elsevier BV]
卷期号:10 (3): e24975-e24975 被引量:3
标识
DOI:10.1016/j.heliyon.2024.e24975
摘要

Abstract

Amyotrophic lateral sclerosis (ALS) is a fatal neurodegenerative disease involving selective vulnerability of energy-intensive motor neurons (MNs). It has been unclear whether mitochondrial function is an upstream driver or a downstream modifier of neurotoxicity. We separated upstream genetic determinants of mitochondrial function, including genetic variation within the mitochondrial genome or autosomes; from downstream changeable factors including mitochondrial DNA copy number (mtCN). Across three cohorts including 6,437 ALS patients, we discovered that a set of mitochondrial haplotypes, chosen because they are linked to measurements of mitochondrial function, are a determinant of ALS survival following disease onset, but do not modify ALS risk. One particular haplotype appeared to be neuroprotective and was significantly over-represented in two cohorts of long-surviving ALS patients. Causal inference for mitochondrial function was achievable using mitochondrial haplotypes, but not autosomal SNPs in traditional Mendelian randomization (MR). Furthermore, rare loss-of-function genetic variants within, and reduced MN expression of, ACADM and DNA2 lead to ∼50 % shorter ALS survival; both proteins are implicated in mitochondrial function. Both mtCN and cellular vulnerability are linked to DNA2 function in ALS patient-derived neurons. Finally, MtCN responds dynamically to the onset of ALS independently of mitochondrial haplotype, and is correlated with disease severity. We conclude that, based on the genetic measures we have employed, mitochondrial function is a therapeutic target for amelioration of disease severity but not prevention of ALS.
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