Alteration of centrosome function and dynamics results in major defects during chromosome segregation and is associated with primary autosomal microcephaly (MCPH). Despite the knowledge accumulated in the last few years, why some centrosomal defects specifically affect neural progenitors is not clear. We describe here that the centrosomal kinase PLK1 controls centrosome asymmetry and cell fate in neural progenitors during development. Gain- or loss-of-function mutations in Plk1, as well as deficiencies in the MCPH genes Cdk5rap2 (MCPH3) and Cep135 (MCPH8), lead to abnormal asymmetry in the centrosomes carrying the mother and daughter centriole in neural progenitors. However, whereas loss of MCPH proteins leads to increased centrosome asymmetry and microcephaly, deficient PLK1 activity results in reduced asymmetry and increased expansion of neural progenitors and cortical growth during mid-gestation. The combination of PLK1 and MCPH mutations results in increased microcephaly accompanied by more aggressive centrosomal and mitotic abnormalities. In addition to highlighting the delicate balance in the level and activity of centrosomal regulators, these data suggest that human PLK1, which maps to 16p12.1, may contribute to the neurodevelopmental defects associated with 16p11.2-p12.2 microdeletions and microduplications in children with developmental delay and dysmorphic features.
Genetic interaction between PLK1 and downstream MCPH proteins in the control of centrosome asymmetry and cell fate during neural progenitor division.
PLK1 与下游 MCPH 蛋白之间的遗传相互作用在神经祖细胞分裂过程中控制中心体不对称性和细胞命运
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作者:González-MartÃnez José, Cwetsch Andrzej W, Gilabert-Juan Javier, Gómez Jesús, Garaulet Guillermo, Schneider Paulina, de Cárcer Guillermo, Mulero Francisca, Caleiras Eduardo, MegÃas Diego, Porlan Eva, Malumbres Marcos
| 期刊: | Cell Death and Differentiation | 影响因子: | 15.400 |
| 时间: | 2022 | 起止号: | 2022 Aug;29(8):1474-1485 |
| doi: | 10.1038/s41418-022-00937-w | 研究方向: | 神经科学、细胞生物学 |
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