Centrosome amplification causes microcephaly
- 12 May 2013
- journal article
- Published by Springer Nature in Nature Cell Biology
- Vol. 15 (7), 731-740
- https://doi.org/10.1038/ncb2746
Abstract
Centrosome amplification is a hallmark of human tumours. In flies, extra centrosomes cause spindle position defects that result in the expansion of the neural stem cell (NSC) pool and consequently in tumour formation. Here we investigated the consequences of centrosome amplification during mouse brain development and homeostasis. We show that centrosome amplification causes microcephaly due to inefficient clustering mechanisms, where NSCs divide in a multipolar fashion producing aneuploid cells that enter apoptosis. Importantly, we show that apoptosis inhibition causes the accumulation of highly aneuploid cells that lose their proliferative capacity and differentiate, thus depleting the pool of progenitors. Even if these conditions are not sufficient to halt brain development, they cause premature death due to tissue degeneration. Our results support an alternative concept to explain the etiology of microcephaly and show that centrosome amplification and aneuploidy can result in tissue degeneration rather than overproliferation and cancer.Keywords
This publication has 67 references indexed in Scilit:
- A Truncating Mutation of CEP135 Causes Primary Microcephaly and Disturbed Centrosomal FunctionAmerican Journal of Human Genetics, 2012
- Development and Evolution of the Human NeocortexCell, 2011
- Cdk5rap2 exposes the centrosomal root of microcephaly syndromesTrends in Cell Biology, 2011
- Structural Basis of the 9-Fold Symmetry of CentriolesCell, 2011
- CDK5RAP2 Regulates Centriole Engagement and Cohesion in MiceDevelopmental Cell, 2010
- Centrosome function in cancer: guilty or innocent?Trends in Cell Biology, 2009
- Centrosome Amplification Can Initiate Tumorigenesis in FliesCell, 2008
- Neuroepithelial Stem Cell Proliferation Requires LIS1 for Precise Spindle Orientation and Symmetric DivisionCell, 2008
- Plk4-Induced Centriole Biogenesis in Human CellsDevelopmental Cell, 2007
- Overexpressing Centriole-Replication Proteins In Vivo Induces Centriole Overduplication and De Novo FormationCurrent Biology, 2007