肌萎缩侧索硬化
外显子组
遗传学
遗传建筑学
外显子组测序
外显率
生物
遗传关联
疾病
全基因组关联研究
遗传变异
基因
人类遗传学
维加维斯
计算生物学
基因分型
生物信息学
遗传变异
罕见病
突变
遗传(遗传算法)
基因检测
等位基因
遗传倾向
遗传异质性
医学
基因组学
作者
Paul J. Hop,Boris Rogelj,Blaž Koritnik,Janez Zidar,Jan H. Veldink
摘要
Amyotrophic lateral sclerosis (ALS) is a heritable disorder where rare variants with low-to-moderate penetrance are thought to dominate genetic risk. To identify such rare variants, we harmonized and analyzed exome data from 22 cohorts, totaling 17,919 individuals with ALS and 200,703 controls across discovery and replication phases. Rare variant analyses identified several new risk genes, with replication confirming association of YKT6 and supporting HTR3C, GBGT1 and KNTC1. We also provide strong, independent validation for genes with limited previous evidence: ARPP21, DNAJC7 and CFAP410. Notably, in ARPP21, we identified a new high-effect variant (p.P747L) and confirmed that p.P563L is an ALS-associated variant leading to an aggressive disease course. Beyond new discoveries, our analyses largely recapitulated the known genetic architecture of ALS, identifying risk variants in over 20% of cases and supporting a cumulative oligogenic risk model. These findings highlight new translational targets and show that rare variant analyses capture substantially more genetic risk than common variant genome-wide association studies.
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