Gaynor-Gillett Sophia C, Cheng Lijun, Shi Manman, Liu Jason, Wang Gaoyuan, Spector Megan, Guo Qiuyu, Qi Le, Flaherty Mary, Wall Martha, Hwang Ahyeon, Gu Mengting, Chen Zhanlin, Chen Yuhang, Moran Jennifer R, Zhang Jing, Lee Donghoon, Gerstein Mark, Geschwind Daniel, White Kevin P
Department of Biology, Cornell College, Mount Vernon, Iowa 52314, USA;
Tempus Labs, Inc., Chicago, Illinois 60654, USA.
Genome Res. 2025 Aug 1;35(8):1887-1901. doi: 10.1101/gr.279584.124.
Genome-wide association studies (GWASs) and expression analyses implicate noncoding regulatory regions as harboring risk factors for psychiatric disease, but functional characterization of these regions remains limited. Here, we perform capture STARR-sequencing of over 70,000 candidate regions to identify active enhancers in primary human neural progenitor cells (phNPCs). We select candidate regions by integrating data from NPCs, prefrontal cortex, developmental timepoints, and GWASs. Over 8000 regions demonstrate enhancer activity in the phNPCs, and we link these regions to over 2200 predicted target genes. These genes are involved in neuronal and psychiatric disease-associated pathways, including neuronal system, nervous system development, and developmental delay. We functionally validate a subset of these enhancers using mutation STARR-sequencing and CRISPR deletions, demonstrating the effects of genetic variation on enhancer activity and enhancer deletion on gene expression. Overall, we identify thousands of highly active enhancers and functionally validated a subset of these enhancers, improving our understanding of regulatory networks underlying brain function and disease.
全基因组关联研究(GWAS)和表达分析表明非编码调控区域藏有精神疾病的风险因素,但这些区域的功能特征仍很有限。在此,我们对超过70000个候选区域进行捕获STARR测序,以鉴定原代人类神经祖细胞(phNPC)中的活性增强子。我们通过整合来自神经祖细胞、前额叶皮层、发育时间点和全基因组关联研究的数据来选择候选区域。超过8000个区域在phNPC中表现出增强子活性,并且我们将这些区域与超过2200个预测的靶基因联系起来。这些基因参与神经元和精神疾病相关途径,包括神经系统、神经系统发育和发育迟缓。我们使用突变STARR测序和CRISPR缺失对这些增强子的一个子集进行功能验证,证明了基因变异对增强子活性的影响以及增强子缺失对基因表达的影响。总体而言,我们鉴定出数千个高活性增强子,并对其中一部分增强子进行了功能验证,增进了我们对大脑功能和疾病潜在调控网络的理解。