增强子
转基因
转基因小鼠
生物
细胞生物学
神经科学
计算生物学
遗传学
基因
基因表达
作者
Yoav Ben‐Simon,Marcus Hooper,Sujatha Narayan,Tanya L. Daigle,Deepanjali Dwivedi,Sharon W. Way,Aaron Oster,David Stafford,John K. Mich,Michael J. Taormina,Refugio A. Martinez,Ximena Opitz-Araya,J. Roth,Shona W. Allen,Angela Ayala,Trygve E. Bakken,Tyler Barcelli,Stuard Barta,Jacqueline L. Bendrick,Darren Bertagnolli
标识
DOI:10.1101/2024.06.10.597244
摘要
The mammalian cortex is comprised of cells classified into types according to shared properties. Defining the contribution of each cell type to the processes guided by the cortex is essential for understanding its function in health and disease. We used transcriptomic and epigenomic cortical cell type taxonomies from mouse and human to define marker genes and putative enhancers and created a large toolkit of transgenic lines and enhancer AAVs for selective targeting of cortical cell populations. We report evaluation of fifteen new transgenic driver lines, two new reporter lines, and >800 different enhancer AAVs covering most subclasses of cortical cells. The tools reported here as well as the scaled process of tool creation and modification enable diverse experimental strategies towards understanding mammalian cortex and brain function.
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