Author
Listed:
- Lite Yang
(Washington University School of Medicine
Washington University School of Medicine)
- Fang Liu
(Washington University School of Medicine)
- Hannah Hahm
(Washington University School of Medicine)
- Takao Okuda
(Washington University School of Medicine)
- Xiaoyue Li
(Washington University School of Medicine)
- Yufen Zhang
(Washington University School of Medicine)
- Vani Kalyanaraman
(Washington University School of Medicine)
- Monique R. Heitmeier
(Washington University School of Medicine)
- Vijay K. Samineni
(Washington University School of Medicine)
Abstract
Single-cell multiomic techniques have sparked immense interest in developing a comprehensive multi-modal map of diverse neuronal cell types and their brain-wide projections. However, investigating the complex wiring diagram, spatial organization, transcriptional, and epigenetic landscapes of brain-wide projection neurons is hampered by the lack of efficient and easily adoptable tools. Here we introduce Projection-TAGs, a retrograde AAV platform that allows multiplex tagging of projection neurons using RNA barcodes. By using Projection-TAGs, we performed multiplex projection tracing of the cortex and high-throughput single-cell profiling of the transcriptional and epigenetic landscapes of the cortical projection neurons in female mice. Projection-TAGs can be leveraged to obtain a snapshot of activity-dependent recruitment of distinct projection neurons and their molecular features in the context of a specific stimulus. Given its flexibility, usability, and compatibility, we envision that Projection-TAGs can be readily applied to build a comprehensive multi-modal map of brain neuronal cell types and their projections.
Suggested Citation
Lite Yang & Fang Liu & Hannah Hahm & Takao Okuda & Xiaoyue Li & Yufen Zhang & Vani Kalyanaraman & Monique R. Heitmeier & Vijay K. Samineni, 2025.
"Projection-TAGs enable multiplex projection tracing and multi-modal profiling of projection neurons,"
Nature Communications, Nature, vol. 16(1), pages 1-18, December.
Handle:
RePEc:nat:natcom:v:16:y:2025:i:1:d:10.1038_s41467-025-60360-w
DOI: 10.1038/s41467-025-60360-w
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