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DISC1-dependent switch from progenitor proliferation to migration in the developing cortex

Authors :
Nicholas Katsanis
Miles D. Houslay
Koko Ishizuka
Atsushi Kamiya
Hideyuki Okano
K. Furukori
Mariela Zeledon
Akiko Hayashi-Takagi
Hannah Murdoch
Saurav Seshadri
Hiroaki Kanki
Ken Ichiro Kubo
Beverly Huang
Akira Sawa
Edwin C. Oh
Jon F. Robinson
Kazunori Nakajima
Allan J. Dunlop
Source :
Nature
Publication Year :
2011

Abstract

Regulatory mechanisms governing the sequence from progenitor cell proliferation to neuronal migration during corticogenesis are poorly understood. Here we report that phosphorylation of DISC1, a major susceptibility factor for several mental disorders, acts as a molecular switch from maintaining proliferation of mitotic progenitor cells to activating migration of postmitotic neurons in mice. Unphosphorylated DISC1 regulates canonical Wnt signalling via an interaction with GSK3β, whereas specific phosphorylation at serine 710 (S710) triggers the recruitment of Bardet-Biedl syndrome (BBS) proteins to the centrosome. In support of this model, loss of BBS1 leads to defects in migration, but not proliferation, whereas DISC1 knockdown leads to deficits in both. A phospho-dead mutant can only rescue proliferation, whereas a phospho-mimic mutant rescues exclusively migration defects. These data highlight a dual role for DISC1 in corticogenesis and indicate that phosphorylation of this protein at S710 activates a key developmental switch.

Details

Language :
English
ISSN :
14764687 and 00280836
Volume :
473
Issue :
7345
Database :
OpenAIRE
Journal :
Nature
Accession number :
edsair.doi.dedup.....48e0ecea5f194e69881da6c8e05090ef