bioRxiv · 10.1101/2023.11.24.568588
All-optical voltage imaging-guided postsynaptic single-cell transcriptome profiling with Voltage-Seq
Abstract
Neuronal pathways recruit large postsynaptic populations and maintain connections via distinct postsynaptic response types (PRTs). Until recently, PRTs were only accessible as a selection criterion for single-cell RNA-sequencing (scRNA-seq) through probing by low-throughput whole-cell electrophysiology. To overcome these limitations and target neurons based on specific PRTs for soma collection and subsequent scRNA-seq, we developed Voltage-Seq. An on-site analysis tool, VoltView, was created to guide soma harvesting of specific PRTs using a classifier based on a previously acquired connectome database from multiple animals. Here, we present a detailed step-by-step protocol, including setting up the optical path, the imaging setup, detailing the imaging procedure, and analysis, the reagents and protocols, complete procedure for sequencing library preparation, and provide other tips and pitfalls to assist researchers in conducting high-throughput all-optical voltage imaging, and to obtain the single-cell transcriptomic data from selected postsynaptic neurons. Voltage-seq workflow can be completed in [~]6 weeks including 4-5 weeks of viral expression of the Voltron sensor. The approach allows researchers to resolve the connectivity ratio of a specific pathway and explore the diversity of PRTs within that connectome. Furthermore, the high throughput in conjunction with quick analysis gives unique access to find specific connections within a large postsynaptic connectome. Voltage-seq also allows the investigation of correlations between connectivity and gene expression changes in a postsynaptic cell-type-specific manner in both excitatory and inhibitory connections.
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Csillag, V., Noble, J., Calvigioni, D., Reinius, B., Fuzik, J.. 2023-11-27. All-optical voltage imaging-guided postsynaptic single-cell transcriptome profiling with Voltage-Seq. https://doi.org/10.1101/2023.11.24.568588
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