人脑细胞类型特异性遗传调控的单核图谱
Single-nucleus atlas of cell-type specific genetic regulation in the human brain
常见疾病的遗传风险变异多位于非编码调控区,但此前研究多用混合组织,看不清是哪类细胞在起作用。作者构建了涵盖1384名不同族裔供者、560万个细胞核的前额叶皮层单核多族裔调控图谱。他们在8大类、27个亚类细胞中识别出14258个基因的遗传调控,其中981个(大类)和857个(亚类)具有细胞类型特异性。该图谱还发现了一批在混合组织分析中检测不到的阿尔茨海默病、精神分裂症相关新基因,为机制研究提供高分辨率资源。
为什么推荐给您:高分辨率细胞类型特异调控图谱,发现混合组织无法检出的疾病基因,属重要新资源。
不需要生物学背景,多打比方
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摘要Abstract
Genetic risk variants for common diseases are predominantly located in non-coding regulatory regions and modulate gene expression. Although bulk tissue studies have elucidated shared mechanisms of regulatory and disease-associated genetics, the cellular specificity of these mechanisms remains largely unexplored. Here we present a comprehensive, single-nucleus multi-ancestry atlas of genetic regulation of gene expression in the human prefrontal cortex, comprising 5.6 million nuclei from 1,384 donors of diverse ancestries. Through multi-resolution analyses spanning eight major cell classes and 27 subclasses, we identify genetic regulation for 14,258 genes, with 981 showing cell type-specific regulatory effects at the class level and 857 at the subclass level. Colocalization of genetic variants associated with gene regulation and disease traits uncovers novel cell type-specific genes implicated in Alzheimer's disease, schizophrenia and other disorders that were not detectable in bulk tissue analyses. Analysis of dynamic genetic regulation at the single-nucleus level identifies 2,073 genes with regulatory effects that vary across developmental trajectories, inferred from a broad age range of donors. We also uncover 1,655 genes with trans-regulatory effects, revealing distal regulation of gene expression. This high-resolution atlas provides insight into the cell type-specific regulatory architecture of the human brain, and offers novel mechanistic targets for understanding the genetic basis of neuropsychiatric and neurodegenerative diseases.