Department of Neuroscience, Brown University, Providence, United States.
Carney Institute for Brain Science, Brown University, Providence, United States.
Elife. 2023 May 11;12:e85041. doi: 10.7554/eLife.85041.
Transsynaptic tracing methods are crucial tools in studying neural circuits. Although a couple of anterograde tracing methods and a targeted retrograde tool have been developed in , there is still need for an unbiased, user-friendly, and flexible retrograde tracing system. Here, we describe -Tango, a method for transsynaptic, retrograde circuit tracing and manipulation in . In this genetically encoded system, a ligand-receptor interaction at the synapse triggers an intracellular signaling cascade that results in reporter gene expression in presynaptic neurons. Importantly, panneuronal expression of the elements of the cascade renders this method versatile, enabling its use not only to test hypotheses but also to generate them. We validate -Tango in various circuits and benchmark it by comparing our findings with the electron microscopy reconstruction of the hemibrain. Our experiments establish -Tango as a key method for circuit tracing in neuroscience research.
转导追踪方法是研究神经回路的重要工具。虽然已经开发出了几种顺行追踪方法和一种靶向逆行工具,但仍然需要一种无偏倚、用户友好和灵活的逆行追踪系统。在这里,我们描述了 -Tango,这是一种在 中进行突触后、逆行回路追踪和操作的方法。在这个基因编码系统中,突触处的配体-受体相互作用触发细胞内信号级联反应,导致突触前神经元中报告基因的表达。重要的是,级联反应的元件在神经元中的普遍表达使这种方法具有多功能性,不仅可以用于检验假设,还可以用于产生假设。我们在各种回路中验证了 -Tango,并通过将我们的发现与 半脑的电子显微镜重建进行比较来对其进行基准测试。我们的实验确立了 -Tango 作为神经科学研究中回路追踪的关键方法。