Systems Neurobiology Laboratories, The Salk Institute for Biological Studies, La Jolla, CA 92037.
Neuroscience Graduate Program, University of California San Diego, La Jolla, CA 92093.
Proc Natl Acad Sci U S A. 2022 May 31;119(22):e2203677119. doi: 10.1073/pnas.2203677119. Epub 2022 May 24.
Cortical circuit tracing using modified rabies virus can identify input neurons making direct monosynaptic connections onto neurons of interest. However, challenges remain in our ability to establish the cell type identity of rabies-labeled input neurons. While transcriptomics may offer an avenue to characterize inputs, the extent of rabies-induced transcriptional changes in distinct neuronal cell types remains unclear, and whether these changes preclude characterization of rabies-infected neurons according to established transcriptomic cell types is unknown. We used single-nucleus RNA sequencing to survey the gene expression profiles of rabies-infected neurons and assessed their correspondence with established transcriptomic cell types. We demonstrated that when using transcriptome-wide RNA profiles, rabies-infected cortical neurons can be transcriptomically characterized despite global and cell-type-specific rabies-induced transcriptional changes. Notably, we found differential modulation of neuronal marker gene expression, suggesting that caution should be taken when attempting to characterize rabies-infected cells with single genes or small gene sets.
使用改良型狂犬病毒进行皮质回路示踪可鉴定出与靶神经元形成直接单突触联系的输入神经元。然而,我们在确定狂犬病毒标记输入神经元的细胞类型身份方面仍面临挑战。尽管转录组学可能为描述输入提供了一种途径,但不同神经元细胞类型中狂犬病毒诱导的转录变化的程度尚不清楚,并且这些变化是否会排除根据已建立的转录组细胞类型对狂犬病毒感染的神经元进行特征描述也尚不清楚。我们使用单核 RNA 测序来检测狂犬病毒感染神经元的基因表达谱,并评估它们与已建立的转录组细胞类型的对应关系。我们证明,尽管存在全基因组和细胞类型特异性的狂犬病毒诱导的转录变化,但使用转录组范围的 RNA 谱可以对狂犬病毒感染的皮质神经元进行转录组特征描述。值得注意的是,我们发现神经元标记基因表达的差异调节,这表明在尝试使用单个基因或小基因集对狂犬病毒感染的细胞进行特征描述时应谨慎行事。