Cell lineage analysis with somatic mutations reveals late divergence of neuronal cell types and cortical areas in human cerebral cortex
Kim, S. N.; Viswanadham, V. V.; Doan, R. N.; Dou, Y.; Bizzotto, S.; Khoshkoo, S.; Huang, A. Y.; Yeh, R.; Chhouk, B.; Truong, A.; Chappell, K. M.; Beaudin, M.; Barton, A. R.; Akula, S. K.; Rento, L.; Lodato, M.; Ganz, J.; Szeto, R. A.; Li, P.; Tsai, J. W.; Hill, R. S.; Park, P. J.; Walsh, C. A.
Show abstract
The mammalian cerebral cortex shows functional specialization into regions with distinct neuronal compositions, most strikingly in the human brain, but little is known in about how cellular lineages shape cortical regional variation and neuronal cell types during development. Here, we use somatic single nucleotide variants (sSNVs) to map lineages of neuronal sub-types and cortical regions. Early-occurring sSNVs rarely respect Brodmann area (BA) borders, while late-occurring sSNVs mark neuron-generating clones with modest regional restriction, though descendants often dispersed into neighboring BAs. Nevertheless, in visual cortex, BA17 contains 30-70% more sSNVs compared to the neighboring BA18, with clones across the BA17/18 border distributed asymmetrically and thus displaying different cortex-wide dispersion patterns. Moreover, we find that excitatory neuron-generating clones with modest regional restriction consistently share low-mosaic sSNVs with some inhibitory neurons, suggesting significant co-generation of excitatory and some inhibitory neurons in the dorsal cortex. Our analysis reveals human-specific cortical cell lineage patterns, with both regional inhomogeneities in progenitor proliferation and late divergence of excitatory/inhibitory lineages.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Multipotent Progenitors Instruct Ontogeny of the Superior Colliculus 95%
- Multimodal analyses reveal genes driving electrophysiological maturation of neurons in the primate prefrontal cortex 95%
- Signature morpho-electric, transcriptomic, and dendritic properties of extratelencephalic-projecting human layer 5 neocortical pyramidal neurons 95%
Similar papers in this journal
- Single-cell RNA-seq uncovers shared and distinct axes of variation in dorsal LGN neurons in mice, non-human primates and humans 96%
- Transcriptional Cartography Integrates Multiscale Biology of the Human Cortex 95%
- Large, three-generation CEPH families reveal post-zygotic mosaicism and variability in germline mutation accumulation 95%
Similar papers in this journal
- Variation of human neural stem cells generating organizer states in vitro before committing to cortical excitatory or inhibitory neuronal fates 96%
- Single-cell profiling and SCOPE-seq reveal the lineage dynamics of adult neurogenesis and NOTUM as a key V-SVZ regulator 95%
- Topographic connectivity and cellular profiling reveal detailed input pathways and functionally distinct cell types in the subthalamic nucleus 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.