Department of Neuroscience, Karolinska Institute, Stockholm, Sweden.
Department of Medical Biochemistry and Biophysics, Karolinska Institute, Stockholm, Sweden.
Nat Methods. 2023 Sep;20(9):1409-1416. doi: 10.1038/s41592-023-01965-1. Epub 2023 Jul 20.
Understanding the routing of neuronal information requires the functional characterization of connections. Neuronal projections recruit large postsynaptic ensembles with distinct postsynaptic response types (PRTs). PRT is typically probed by low-throughput whole-cell electrophysiology and is not a selection criterion for single-cell RNA-sequencing (scRNA-seq). To overcome these limitations and target neurons based on specific PRTs for soma harvesting and subsequent scRNA-seq, we created Voltage-Seq. We established all-optical voltage imaging and recorded the PRT of 8,347 neurons in the mouse periaqueductal gray (PAG) evoked by the optogenetic activation of ventromedial hypothalamic (VMH) terminals. PRTs were classified and spatially resolved in the entire VMH-PAG connectome. We built an onsite analysis tool named VoltView to navigate soma harvesting towards target PRTs guided by a classifier that used the VMH-PAG connectome database as a reference. We demonstrated Voltage-seq by locating VMH-driven γ-aminobutyric acid-ergic neurons in the PAG, guided solely by the onsite classification in VoltView.
理解神经元信息的传递路径需要对连接进行功能特征分析。神经元投射会募集具有不同突触后反应类型(PRT)的大型突触后集合。PRT 通常通过低通量全细胞电生理学进行探测,而不是单细胞 RNA 测序(scRNA-seq)的选择标准。为了克服这些限制,并根据特定的 PRT 对神经元进行靶向,以用于胞体收获和随后的 scRNA-seq,我们创建了 Voltage-Seq。我们建立了全光学电压成像,并通过光遗传激活腹内侧下丘脑(VMH)末梢记录了在小鼠导水管周围灰质(PAG)中 8347 个神经元的 PRT。PRT 在整个 VMH-PAG 连接组中进行分类和空间解析。我们构建了一个名为 VoltView 的现场分析工具,该工具使用 VMH-PAG 连接组数据库作为参考,使用分类器引导胞体收获到目标 PRT。我们通过 VoltView 中的现场分类,仅通过在 VoltView 中的现场分类,定位 PAG 中的 VMH 驱动的γ-氨基丁酸能神经元,展示了 Voltage-seq 的应用。