bioRxiv · 10.1101/2024.10.24.619934
Dendritome Mapping Unveils Spatial Organization of Striatal D1/D2-Neuron Morphology
Abstract
Morphology is a cardinal feature of a neuron and mediates its functions, but profiling neuronal morphologies at scale remains a formidable challenge. Here we describe a generalizable pipeline for large-scale brainwide profiling of dendritic morphology of genetically-defined single neurons in the mouse brain. We generated a dataset of 3,762 3D-reconstructed and reference-atlas mapped striatal D1- and D2-medium spiny neurons (MSNs). Integrative morphometric analyses reveal distinct impacts of D1/D2 and anatomical locations on MSN morphology. To analyze striatal regional features of MSN dendrites without prior anatomical constraints, we assigned MSNs to a lattice of cubic boxes in the reference brain atlas, and summarized morphometric representation ("eigen-morph") for each box and clustered boxes with shared morphometry. This analysis reveals 6 modules with characteristic dendritic features and spanning contiguous striatal territories, each receiving distinct corticostriatal inputs. Finally, we found aging confers robust and concordant dendritic length and branching defects in D1/D2-MSNs, while Huntingtons disease (HD) mice exhibit MSN-subtype and striatal regional specific pathology. Together, our study demonstrates a systems-biology approach to profile dendritic morphology of genetically-defined single-neurons; and defines novel striatal D1/D2-MSN morphological territories and aging- or HD-associated pathologies.
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Park, C. S., Yan, M., Zhu, M., Akram, M. A., Foster, N. N., Bennecke, A., Choi, C., Marrett, K., Moradi, K., Zhang, J. Y., Magat, G., Nanda, S., Vaca, R., Wijaya, K., Zablan, J. R., Lee, S., Song, C., Lara, M. J., Louie, M., Cong, J., Kim, Y., Ascoli, G. A., Langfelder, P., Tward, D., Dong, H.-W., Yang, X. W.. 2024-10-24. Dendritome Mapping Unveils Spatial Organization of Striatal D1/D2-Neuron Morphology. https://doi.org/10.1101/2024.10.24.619934
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