生物
计算生物学
表观遗传学
人脑
电池类型
染色质
单细胞分析
再髓鞘化
转录因子
细胞
转录组
单细胞测序
基因
基因表达
神经科学
DNA
遗传学
表型
中枢神经系统
外显子组测序
髓鞘
作者
Blue B. Lake,Song Chen,Brandon C. Sos,Jean Fan,Gwendolyn E. Kaeser,Yun C. Yung,Thao Duong,Derek Gao,Jerold Chun,Peter V. Kharchenko,Kun Zhang
摘要
Single-cell analysis of the adult human brain is facilitated by improved methods for RNA-seq and hypersensitive-site mapping. Detailed characterization of the cell types in the human brain requires scalable experimental approaches to examine multiple aspects of the molecular state of individual cells, as well as computational integration of the data to produce unified cell-state annotations. Here we report improved high-throughput methods for single-nucleus droplet-based sequencing (snDrop-seq) and single-cell transposome hypersensitive site sequencing (scTHS-seq). We used each method to acquire nuclear transcriptomic and DNA accessibility maps for >60,000 single cells from human adult visual cortex, frontal cortex, and cerebellum. Integration of these data revealed regulatory elements and transcription factors that underlie cell-type distinctions, providing a basis for the study of complex processes in the brain, such as genetic programs that coordinate adult remyelination. We also mapped disease-associated risk variants to specific cellular populations, which provided insights into normal and pathogenic cellular processes in the human brain. This integrative multi-omics approach permits more detailed single-cell interrogation of complex organs and tissues.
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