Cold Spring Harbor Laboratory, Cold Spring Harbor, New York, NY, USA.
Department of Neurobiology, Duke University Medical Center, Durham, NC, USA.
Nature. 2021 Oct;598(7879):182-187. doi: 10.1038/s41586-021-03955-9. Epub 2021 Oct 6.
Diverse types of glutamatergic pyramidal neurons mediate the myriad processing streams and output channels of the cerebral cortex, yet all derive from neural progenitors of the embryonic dorsal telencephalon. Here we establish genetic strategies and tools for dissecting and fate-mapping subpopulations of pyramidal neurons on the basis of their developmental and molecular programs. We leverage key transcription factors and effector genes to systematically target temporal patterning programs in progenitors and differentiation programs in postmitotic neurons. We generated over a dozen temporally inducible mouse Cre and Flp knock-in driver lines to enable the combinatorial targeting of major progenitor types and projection classes. Combinatorial strategies confer viral access to subsets of pyramidal neurons defined by developmental origin, marker expression, anatomical location and projection targets. These strategies establish an experimental framework for understanding the hierarchical organization and developmental trajectory of subpopulations of pyramidal neurons that assemble cortical processing networks and output channels.
不同类型的谷氨酸能锥体神经元介导大脑皮层的多种处理流和输出通道,但它们都源自胚胎背侧端脑的神经前体细胞。在这里,我们建立了遗传策略和工具,用于根据其发育和分子程序对锥体神经元的亚群进行剖析和命运映射。我们利用关键的转录因子和效应基因,系统地针对前体细胞中的时间模式程序和有丝分裂后神经元中的分化程序进行靶向。我们生成了十几个具有时间诱导性的小鼠 Cre 和 Flp 敲入驱动系,以实现主要前体细胞类型和投射类别的组合靶向。组合策略赋予了病毒对由发育起源、标志物表达、解剖位置和投射靶标定义的锥体神经元亚群的访问能力。这些策略为理解组装皮层处理网络和输出通道的锥体神经元亚群的层次组织和发育轨迹提供了一个实验框架。