Orderly specification and precise laminar deployment of cortical glutamatergic projection neuron types through intermediate progenitors
Huilgol, D.; Levine, J. M.; Galbavy, W.; Wang, B.-S.; Huang, Z. J.
Show abstract
The cerebral cortex comprises diverse types of glutamatergic projection neurons (PNs) generated from radial glial progenitors (RGs) through either direct neurogenesis or indirect neurogenesis (iNG) via intermediate progenitors (IPs). A foundational concept in corticogenesis is the "inside-out" model whereby successive generations of PNs sequentially migrate to deep then progressively more superficial layers, but its biological significance remains unclear; and the role of iNG in this process is unknown. Using genetic strategies linking PN birth-dating to projection mapping in mice, we found that the laminar deployment of IP-derived PNs substantially deviate from an inside-out rule: PNs destined to non-consecutive layers are generated at the same time, and different PN types of the same layer are generated at non-contiguous times. The overarching scheme of iNG is the sequential specification and precise laminar deployment of projection-defined PN types, which may contribute to the orderly assembly of cortical output channels and processing streams. HIGHLIGHTS- Each IP is fate-restricted to generate a pair of near-identical PNs - Corticogenesis involves the orderly generation of fate-restricted IP temporal cohorts - IP temporal cohorts sequentially as well as concurrently specify multiple PN types - The deployment of PN types to specific layers does not follow an inside-out order
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- DNMT1-Mediated Regulation of Somatostatin-positive Interneuron Migration Impacts Cortical Architecture and Function 97%
- Cadherins orchestrate specific patterns of perisomatic inhibition onto distinct pyramidal cell populations 97%
- DNA replication fork speed Acts as a Pacer in Cortical Neurogenesis 97%
Similar papers in this journal
- Parvalbumin expression identifies subicular principal cells with high projection specificity 96%
- Striatal output regulates the postnatal maturation of cortical circuits 96%
- Topographic connectivity and cellular profiling reveal detailed input pathways and functionally distinct cell types in the subthalamic nucleus 96%
Similar papers in this journal
Similar papers in this journal
- Directed differentiation of functional corticospinal-like neurons from endogenous SOX6+/NG2+ cortical progenitors 98%
- Cortical ChAT+ neurons co-transmit acetylcholine and GABA in a target- and brain-region specific manner 97%
- Astrocytic modulation of population encoding in mouse visual cortex via GABA transporter 3 revealed by multiplexed CRISPR/Cas9 gene editing 96%
"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.