Human cortical neurogenesis is altered via glucocorticoid-mediated regulation of ZBTB16 expression
Krontira, Anthi C.; Cruceanu, Cristiana; Dony, Leander; Kyrousi, Christina; Link, Marie Helen; Rek, Nils; Pöhlchen, Dorothee; Raimundo, Catarina; Penner-Goeke, Signe; Schowe, Alicia; Czamara, Darina; Lahti-Pulkkinen, Marius; Sammallahti, Sara; Wolford, Elina; Heinonen, Kati; Roeh, Simone; Sportelli, Vincenza; Wölfel, Barbara; Ködel, Maik; Sauer, Susann; Rex-Haffner, Monika; Räikkönen, Katri; Labeur, Marta; Cappello, Silvia; Binder, Elisabeth B. (2024-05-01)
Krontira, Anthi C.
Cruceanu, Cristiana
Dony, Leander
Kyrousi, Christina
Link, Marie Helen
Rek, Nils
Pöhlchen, Dorothee
Raimundo, Catarina
Penner-Goeke, Signe
Schowe, Alicia
Czamara, Darina
Lahti-Pulkkinen, Marius
Sammallahti, Sara
Wolford, Elina
Heinonen, Kati
Roeh, Simone
Sportelli, Vincenza
Wölfel, Barbara
Ködel, Maik
Sauer, Susann
Rex-Haffner, Monika
Räikkönen, Katri
Labeur, Marta
Cappello, Silvia
Binder, Elisabeth B.
01.05.2024
NEURON
Julkaisun pysyvä osoite on
https://urn.fi/URN:NBN:fi:tuni-202406257385
https://urn.fi/URN:NBN:fi:tuni-202406257385
Kuvaus
Peer reviewed
Tiivistelmä
Glucocorticoids are important for proper organ maturation, and their levels are tightly regulated during development. Here, we use human cerebral organoids and mice to study the cell-type-specific effects of glucocorticoids on neurogenesis. We show that glucocorticoids increase a specific type of basal progenitors (co-expressing PAX6 and EOMES) that has been shown to contribute to cortical expansion in gyrified species. This effect is mediated via the transcription factor ZBTB16 and leads to increased production of neurons. A phenome-wide Mendelian randomization analysis of an enhancer variant that moderates glucocorticoid-induced ZBTB16 levels reveals causal relationships with higher educational attainment and altered brain structure. The relationship with postnatal cognition is also supported by data from a prospective pregnancy cohort study. This work provides a cellular and molecular pathway for the effects of glucocorticoids on human neurogenesis that relates to lasting postnatal phenotypes.
Kokoelmat
- TUNICRIS-julkaisut [23081]
