Early fate diversification of radial glial progenitors during corticogenesis
Varela Martínez I, Villalba Requena A, García-Marqués J, Aguilera A, Castro DS, Hippenmeyer S, Nieto M. 2026. Early fate diversification of radial glial progenitors during corticogenesis. Science Advances. 12(32), eadw5487.
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Journal Article
| Published
| English
Scopus indexed
Author
Varela Martínez, IreneISTA;
Villalba Requena, AnaISTA
;
García-Marqués, Jorge;
Aguilera, Alfonso;
Castro, Diogo S.;
Hippenmeyer, SimonISTA
;
Nieto, Marta
Department
Abstract
Radial glial progenitors (RGPs) generate all projection neurons (PNs) in the cerebral cortex through incompletely understood processes. We combined Mosaic Analysis with Double Markers at embryonic stages (E)12.5 and E13.5 with early postnatal callosal tracing to dissect RGP lineage progression. We find that multipotent RGPs generate all extra-telencephalic (ET) and intra-telencephalic (IT) PNs via parallel sublineages that emerge simultaneously at neurogenesis onset. ET-PN production progresses exclusively via small, self-consuming lineages; IT-PN lineages feature RGPs generating large translaminar outputs. The early emergence of IT-PN–fated RGPs, coinciding with a switch to direct neurogenesis, contributes to the stereotyped population-level progression of the multipotent lineage. We also identify POU3F transcription factors as candidate regulators of IT-PN fate via noncanonical mitotic chromatin binding. The results support a model whereby IT- and ET-PNs arise from an early bifurcation and parallel specification within the multipotent RGP lineage.
Publishing Year
Date Published
2026-08-07
Journal Title
Science Advances
Publisher
AAAS
Acknowledgement
We thank M. caouyette for the plasmid construction for Pou3f1overexpression; d. Pinto-Benito for valuable assistance with shRnA validation in n2A cells andqPcR experiments; c. Varela-Martínez for help with the code for graphical analysis; allmembers from the nieto’s lab for comment on the manuscript, specially to F. Martín for theinsightful discussions; J. c. Oliveros and J. A. García from the computational service of the cnBfor help with the analysis of RnAseq dataset; c. O. Sorzano for help with statistical analysis; andA. Oña and the service of Advance Optical Microscopy of the cnB for technical advice.Funding: i.V.-M. holds a fellowship funded by MciciU (PRe-2018-083376) and 2023 eMBOscientific exchange grant 10214. the work was funded by grants to M.n. (Pid2020-112831GB- i00 and Pid2023-146322nB- i00 by Mcin/Aei/10.13039/501100011033 and by“eRdF A way of making europe”).
Volume
12
Issue
32
Page
eadw5487
eISSN
IST-REx-ID
Cite this
Varela Martínez I, Villalba Requena A, García-Marqués J, et al. Early fate diversification of radial glial progenitors during corticogenesis. Science Advances. 2026;12(32):eadw5487. doi:10.1126/sciadv.adw5487
Varela Martínez, I., Villalba Requena, A., García-Marqués, J., Aguilera, A., Castro, D. S., Hippenmeyer, S., & Nieto, M. (2026). Early fate diversification of radial glial progenitors during corticogenesis. Science Advances. AAAS. https://doi.org/10.1126/sciadv.adw5487
Varela Martínez, Irene, Ana Villalba Requena, Jorge García-Marqués, Alfonso Aguilera, Diogo S. Castro, Simon Hippenmeyer, and Marta Nieto. “Early Fate Diversification of Radial Glial Progenitors during Corticogenesis.” Science Advances. AAAS, 2026. https://doi.org/10.1126/sciadv.adw5487.
I. Varela Martínez et al., “Early fate diversification of radial glial progenitors during corticogenesis,” Science Advances, vol. 12, no. 32. AAAS, p. eadw5487, 2026.
Varela Martínez I, Villalba Requena A, García-Marqués J, Aguilera A, Castro DS, Hippenmeyer S, Nieto M. 2026. Early fate diversification of radial glial progenitors during corticogenesis. Science Advances. 12(32), eadw5487.
Varela Martínez, Irene, et al. “Early Fate Diversification of Radial Glial Progenitors during Corticogenesis.” Science Advances, vol. 12, no. 32, AAAS, 2026, p. eadw5487, doi:10.1126/sciadv.adw5487.
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