Hook3 Interacts with PCM1 to Regulate Pericentriolar Material Assembly and the Timing of Neurogenesis

Centrosome functions are important in multiple brain developmental processes. Proper functioning of the centrosome relies on assembly of protein components into the pericentriolar material. This dynamic assembly is mediated by the trafficking of pericentriolar satellites, which are comprised of cent...

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Veröffentlicht in:Neuron (Cambridge, Mass.) Mass.), 2010-01, Vol.65 (2), p.191-203
Hauptverfasser: Ge, Xuecai, Frank, Christopher L., Calderon de Anda, Froylan, Tsai, Li-Huei
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Sprache:eng
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Zusammenfassung:Centrosome functions are important in multiple brain developmental processes. Proper functioning of the centrosome relies on assembly of protein components into the pericentriolar material. This dynamic assembly is mediated by the trafficking of pericentriolar satellites, which are comprised of centrosomal proteins. Here we demonstrate that trafficking of pericentriolar satellites requires the interaction between Hook3 and Pericentriolar Material 1 (PCM1). Hook3, previously shown to link the centrosome and the nucleus in C. elegans, is recruited to pericentriolar satellites through interaction with PCM1, a protein associated with schizophrenia. Disruption of the Hook3-PCM1 interaction in vivo impairs interkinetic nuclear migration, a featured behavior of embryonic neural progenitors. This in turn leads to overproduction of neurons and premature depletion of the neural progenitor pool in the developing neocortex. These results underscore the importance of centrosomal assembly in neurogenesis and provide potential insights into the etiology of brain developmental diseases related to the centrosome dysfunction. ► PCM1-Hook3 interaction is required for the centrosome assembly ► The dynamic centrosome assembly is important for neural progenitors to carry out INM ► INM disruption impairs neurogenesis in the developing cortex
ISSN:0896-6273
1097-4199
DOI:10.1016/j.neuron.2010.01.011