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cdk4 和 cyclinD1 的过表达会促使成年老鼠大脑中的神经干细胞更大程度地扩增。

Overexpression of cdk4 and cyclinD1 triggers greater expansion of neural stem cells in the adult mouse brain.

机构信息

German Research Foundation Research Center and Cluster of Excellence for Regenerative Therapies, Medical Faculty, Dresden University of Technology, 01307 Dresden, Germany.

出版信息

J Exp Med. 2011 May 9;208(5):937-48. doi: 10.1084/jem.20102167. Epub 2011 Apr 11.

Abstract

Neural stem cells (NSCs) in the adult mammalian brain generate neurons and glia throughout life. However, the physiological role of adult neurogenesis and the use of NSCs for therapy are highly controversial. One factor hampering the study and manipulation of neurogenesis is that NSCs, like most adult somatic stem cells, are difficult to expand and their switch to differentiation is hard to control. In this study, we show that acute overexpression of the cdk4 (cyclin-dependent kinase 4)-cyclinD1 complex in the adult mouse hippocampus cell-autonomously increases the expansion of neural stem and progenitor cells while inhibiting neurogenesis. Importantly, we developed a system that allows the temporal control of cdk4-cyclinD1 overexpression, which can be used to increase the number of neurons generated from the pool of manipulated precursor cells. Beside providing a proof of principle that expansion versus differentiation of somatic stem cells can be controlled in vivo, our study describes, to the best of our knowledge, the first acute and inducible temporal control of neurogenesis in the mammalian brain, which may be critical for identifying the role of adult neurogenesis, using NSCs for therapy, and, perhaps, extending our findings to other adult somatic stem cells.

摘要

成体神经干细胞(NSCs)在哺乳动物大脑中终生产生神经元和神经胶质细胞。然而,成体神经发生的生理作用以及 NSCs 在治疗中的应用存在很大争议。阻碍神经发生研究和操作的一个因素是,与大多数成体体干细胞一样,NSCs 难以扩增,其向分化的转变难以控制。在这项研究中,我们表明,在成年小鼠海马体中急性过表达 CDK4(细胞周期蛋白依赖性激酶 4)-cyclinD1 复合物可自主增加神经干细胞和祖细胞的扩增,同时抑制神经发生。重要的是,我们开发了一种允许 CDK4-cyclinD1 过表达时间控制的系统,该系统可用于增加从受操作前体细胞池中产生的神经元数量。除了提供体内控制体干细胞扩增与分化的原理证明外,我们的研究还描述了,据我们所知,哺乳动物大脑中神经发生的首次急性和诱导性时间控制,这对于确定成体神经发生的作用、将 NSCs 用于治疗以及,也许,将我们的发现扩展到其他成体体干细胞可能至关重要。

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