Program in Bioinformatics and Integrative Biology, University of Massachusetts Chan Medical School, Worcester, MA, 01605, USA.
Department of Neurology, University of Massachusetts Chan Medical School, Worcester, MA, 01605, USA.
Nat Commun. 2022 Jun 10;13(1):3243. doi: 10.1038/s41467-022-30968-3.
Cerebral organoids can be used to gain insights into cell type specific processes perturbed by genetic variants associated with neuropsychiatric disorders. However, robust and scalable phenotyping of organoids remains challenging. Here, we perform RNA sequencing on 71 samples comprising 1,420 cerebral organoids from 25 donors, and describe a framework (Orgo-Seq) to integrate bulk RNA and single-cell RNA sequence data. We apply Orgo-Seq to 16p11.2 deletions and 15q11-13 duplications, two loci associated with autism spectrum disorder, to identify immature neurons and intermediate progenitor cells as critical cell types for 16p11.2 deletions. We further applied Orgo-Seq to identify cell type-specific driver genes. Our work presents a quantitative phenotyping framework to integrate multi-transcriptomic datasets for the identification of cell types and cell type-specific co-expressed driver genes associated with neuropsychiatric disorders.
脑类器官可用于深入了解受与神经精神疾病相关的遗传变异影响的特定细胞类型的过程。然而,对类器官进行稳健且可扩展的表型分析仍然具有挑战性。在这里,我们对 25 名供体的 1420 个脑类器官的 71 个样本进行了 RNA 测序,并描述了一个整合批量 RNA 和单细胞 RNA 序列数据的框架(Orgo-Seq)。我们将 Orgo-Seq 应用于 16p11.2 缺失和 15q11-13 重复两个与自闭症谱系障碍相关的基因座,以鉴定不成熟神经元和中间祖细胞作为 16p11.2 缺失的关键细胞类型。我们进一步应用 Orgo-Seq 来鉴定细胞类型特异性驱动基因。我们的工作提出了一种定量表型分析框架,用于整合多转录组数据集,以鉴定与神经精神疾病相关的细胞类型和细胞类型特异性共表达驱动基因。