» Articles » PMID: 39392541

Oscillatory DeltaC Expression in Neural Progenitors Primes the Prototype of Forebrain Development

Overview
Journal Mol Neurobiol
Date 2024 Oct 11
PMID 39392541
Authors
Affiliations
Soon will be listed here.
Abstract

Notch signaling plays a pivotal role in regulating various developmental processes, particularly in controlling the timing of neuronal production within the developing neocortex. Central to this regulatory mechanism is the oscillatory pattern of Delta, which functions as a developmental clock modulator. Its deficiency profoundly impairs mammalian brain formation, highlighting its fundamental role in brain development. However, zebrafish carrying a mutation in the functional ortholog DeltaC (dlc) within their functional ortholog exhibit an intact forebrain structure, implying evolutionary variations in Notch signaling within the forebrain. In this study, we unveil the distinct yet analogous expression profiles of Delta and Her genes in the developing vertebrate forebrain. Specifically, for the first time, we detected the oscillatory expression of the Delta gene dlc in the developing zebrafish forebrain. Although this oscillatory pattern appeared irregular and was not pervasive among the progenitor population, attenuation of the dlc-involved Notch pathway using a γ-secretase inhibitor impaired neuronal differentiation in the developing zebrafish forebrain, revealing the indispensable role of the dlc-involved Notch pathway in regulating early zebrafish neurogenesis. Taken together, our results demonstrate the foundational prototype of dlc-involved Notch signaling in the developing zebrafish forebrains, upon which the intricate patterns of the mammalian neocortex may have been sculpted.

References
1.
Sueda R, Imayoshi I, Harima Y, Kageyama R . High Hes1 expression and resultant Ascl1 suppression regulate quiescent vs. active neural stem cells in the adult mouse brain. Genes Dev. 2019; 33(9-10):511-523. PMC: 6499325. DOI: 10.1101/gad.323196.118. View

2.
Cardenas A, Borrell V . Molecular and cellular evolution of corticogenesis in amniotes. Cell Mol Life Sci. 2019; 77(8):1435-1460. PMC: 11104948. DOI: 10.1007/s00018-019-03315-x. View

3.
Ochi S, Imaizumi Y, Shimojo H, Miyachi H, Kageyama R . Oscillatory expression of Hes1 regulates cell proliferation and neuronal differentiation in the embryonic brain. Development. 2020; 147(4). DOI: 10.1242/dev.182204. View

4.
Zhang X, Li Y, Xu H, Zhang Y . The γ-secretase complex: from structure to function. Front Cell Neurosci. 2015; 8:427. PMC: 4263104. DOI: 10.3389/fncel.2014.00427. View

5.
Alunni A, Krecsmarik M, Bosco A, Galant S, Pan L, Moens C . Notch3 signaling gates cell cycle entry and limits neural stem cell amplification in the adult pallium. Development. 2013; 140(16):3335-47. PMC: 3737716. DOI: 10.1242/dev.095018. View