Levine E M, Close J, Fero M, Ostrovsky A, Reh T A
Department of Biological Structure, University of Washington, Seattle, Washington, 98195, USA.
Dev Biol. 2000 Mar 15;219(2):299-314. doi: 10.1006/dbio.2000.9622.
The cyclin-dependent kinase inhibitor protein, p27(Kip1), is necessary for the timing of cell cycle withdrawal that precedes terminal differentiation in oligodendrocytes of the optic nerve. Although p27(Kip1) is widely expressed in the developing central nervous system, it is not known whether this protein has a similar role in neuronal differentiation. To address this issue, we have examined the expression and function of p27(Kip1) in the developing retina, a well-characterized part of the central nervous system. p27(Kip1) is expressed in a pattern coincident with the onset of differentiation of most retinal cell types. In vitro analyses show that p27(Kip1) accumulation in retinal cells correlates with cell cycle withdrawal and differentiation, and when overexpressed, p27(Kip1) inhibits proliferation of the progenitor cells. Furthermore, the histogenesis of photoreceptors and Müller glia is extended in the retina of p27(Kip1)-deficient mice. Finally, we examined the adult retinal dysplasia in p27(Kip1)-deficient mice with cell-type-specific markers. Contrary to previous suggestions that the dysplasia is caused by excess production of photoreceptors, we suggest that the dysplasia is due to the displacement of reactive Müller glia into the layer of photoreceptor outer segments. These results demonstrate that p27(Kip1) is part of the molecular mechanism that controls the decision of multipotent central nervous system progenitors to withdraw from the cell cycle. Second, postmitotic Müller glia have a novel and intrinsic requirement for p27(Kip1) in maintaining their differentiated state.
细胞周期蛋白依赖性激酶抑制蛋白p27(Kip1)对视神经少突胶质细胞终末分化前的细胞周期退出时间是必需的。尽管p27(Kip1)在发育中的中枢神经系统中广泛表达,但尚不清楚该蛋白在神经元分化中是否具有类似作用。为了解决这个问题,我们研究了p27(Kip1)在发育中的视网膜(中枢神经系统一个特征明确的部分)中的表达和功能。p27(Kip1)以与大多数视网膜细胞类型分化开始相一致的模式表达。体外分析表明,视网膜细胞中p27(Kip1)的积累与细胞周期退出和分化相关,并且当过度表达时,p27(Kip1)抑制祖细胞的增殖。此外,p27(Kip1)缺陷小鼠的视网膜中光感受器和Müller胶质细胞的组织发生延长。最后,我们用细胞类型特异性标记物检查了p27(Kip1)缺陷小鼠的成年视网膜发育异常。与之前认为发育异常是由光感受器过度产生引起的观点相反,我们认为发育异常是由于反应性Müller胶质细胞移位到光感受器外段层所致。这些结果表明,p27(Kip1)是控制多能中枢神经系统祖细胞退出细胞周期决定的分子机制的一部分。其次,有丝分裂后的Müller胶质细胞在维持其分化状态方面对p27(Kip1)有新的内在需求。