Cell cycle regulation of proliferation versus differentiation in the central nervous system

被引:0
作者
Laura J. A. Hardwick
Fahad R. Ali
Roberta Azzarelli
Anna Philpott
机构
[1] University of Cambridge,Department of Oncology, Hutchison/MRC Research Centre
[2] University of Cambridge,Department of Clinical Neuroscience, John van Geest Centre for Brain Repair
来源
Cell and Tissue Research | 2015年 / 359卷
关键词
Cell cycle; Differentiation; Neurogenesis; Proneural; Central nervous system;
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中图分类号
学科分类号
摘要
Formation of the central nervous system requires a period of extensive progenitor cell proliferation, accompanied or closely followed by differentiation; the balance between these two processes in various regions of the central nervous system gives rise to differential growth and cellular diversity. The correlation between cell cycle lengthening and differentiation has been reported across several types of cell lineage and from diverse model organisms, both in vivo and in vitro. Furthermore, different cell fates might be determined during different phases of the preceding cell cycle, indicating direct cell cycle influences on both early lineage commitment and terminal cell fate decisions. Significant advances have been made in the last decade and have revealed multi-directional interactions between the molecular machinery regulating the processes of cell proliferation and neuronal differentiation. Here, we first introduce the modes of proliferation in neural progenitor cells and summarise evidence linking cell cycle length and neuronal differentiation. Second, we describe the manner in which components of the cell cycle machinery can have additional and, sometimes, cell-cycle-independent roles in directly regulating neurogenesis. Finally, we discuss the way that differentiation factors, such as proneural bHLH proteins, can promote either progenitor maintenance or differentiation according to the cellular environment. These intricate connections contribute to precise coordination and the ultimate division versus differentiation decision.
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页码:187 / 200
页数:13
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共 387 条
[1]  
Anthony TE(2004)Radial glia serve as neuronal progenitors in all regions of the central nervous system Neuron 41 881-890
[2]  
Klein C(2011)Overexpression of cdk4 and cyclinD1 triggers greater expansion of neural stem cells in the adult mouse brain J Exp Med 208 937-948
[3]  
Fishell G(2003)Induction and patterning of neuronal development, and its connection to cell cycle control Curr Opin Neurobiol 13 16-25
[4]  
Heintz N(2005)Retinoblastoma and the related pocket protein p107 act as coactivators of NeuroD1 to enhance gene transcription J Biol Chem 280 16088-16095
[5]  
Artegiani B(1996)X-MyT1, a Cell 87 1191-1202
[6]  
Lindemann D(2013) C2HC-type zinc finger protein with a regulatory function in neuronal differentiation Nat Rev Mol Cell Biol 14 518-528
[7]  
Calegari F(2002)Control of cell cycle transcription during G1 and S phases Nat Rev Neurosci 3 517-530
[8]  
Bally-Cuif L(2001)Proneural genes and the specification of neural cell types Curr Opin Neurobiol 11 43-49
[9]  
Hammerschmidt M(2003)Specification of neuronal fates in the ventral neural tube J Cell Sci 116 4947-4955
[10]  
Batsché E(2005)An inhibition of cyclin-dependent kinases that lengthens, but does not arrest, neuroepithelial cell cycle induces premature neurogenesis J Neurosci 25 6533-6538