生物
表达数量性状基因座
数量性状位点
神经发生
电池类型
等位基因
遗传学
基因座(遗传学)
基因
神经科学
单核苷酸多态性
细胞
基因型
作者
Nil Aygün,Angela L. Elwell,Dan Liang,Michael J. Lafferty,Kerry E. Cheek,Kenan P. Courtney,Jessica Mory,Ellie Hadden-Ford,Oleh Krupa,Luis de la Torre-Ubieta,Daniel H. Geschwind,Michael I. Love,Jason L. Stein
标识
DOI:10.1016/j.ajhg.2021.07.011
摘要
Interpretation of the function of non-coding risk loci for neuropsychiatric disorders and brain-relevant traits via gene expression and alternative splicing quantitative trait locus (e/sQTL) analyses is generally performed in bulk post-mortem adult tissue. However, genetic risk loci are enriched in regulatory elements active during neocortical differentiation, and regulatory effects of risk variants may be masked by heterogeneity in bulk tissue. Here, we map e/sQTLs, and allele-specific expression in cultured cells representing two major developmental stages, primary human neural progenitors (n = 85) and their sorted neuronal progeny (n = 74), identifying numerous loci not detected in either bulk developing cortical wall or adult cortex. Using colocalization and genetic imputation via transcriptome-wide association, we uncover cell-type-specific regulatory mechanisms underlying risk for brain-relevant traits that are active during neocortical differentiation. Specifically, we identified a progenitor-specific eQTL for CENPW co-localized with common variant associations for cortical surface area and educational attainment.
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