|  Help  |  About  |  Contact Us

Publication : MicroRNA-34/449 controls mitotic spindle orientation during mammalian cortex development.

First Author  Fededa JP Year  2016
Journal  EMBO J Volume  35
Issue  22 Pages  2386-2398
PubMed ID  27707753 Mgi Jnum  J:238636
Mgi Id  MGI:5823301 Doi  10.15252/embj.201694056
Citation  Fededa JP, et al. (2016) MicroRNA-34/449 controls mitotic spindle orientation during mammalian cortex development. EMBO J 35(22):2386-2398
abstractText  Correct orientation of the mitotic spindle determines the plane of cellular cleavage and is crucial for organ development. In the developing cerebral cortex, spindle orientation defects result in severe neurodevelopmental disorders, but the precise mechanisms that control this important event are not fully understood. Here, we use a combination of high-content screening and mouse genetics to identify the miR-34/449 family as key regulators of mitotic spindle orientation in the developing cerebral cortex. By screening through all cortically expressed miRNAs in HeLa cells, we show that several members of the miR-34/449 family control mitotic duration and spindle rotation. Analysis of miR-34/449 knockout (KO) mouse embryos demonstrates significant spindle misorientation phenotypes in cortical progenitors, resulting in an excess of radial glia cells at the expense of intermediate progenitors and a significant delay in neurogenesis. We identify the junction adhesion molecule-A (JAM-A) as a key target for miR-34/449 in the developing cortex that might be responsible for those defects. Our data indicate that miRNA-dependent regulation of mitotic spindle orientation is crucial for cell fate specification during mammalian neurogenesis.
Quick Links:
 
Quick Links:
 

Expression

Publication --> Expression annotations

 

Other

31 Bio Entities

Trail: Publication

62 Expression

Trail: Publication