Department of Cell Biology and Neuroscience, Rutgers, The State University of New Jersey, Piscataway, New Jersey 08854-8082, USA.
J Biol Chem. 2010 Apr 30;285(18):14052-61. doi: 10.1074/jbc.M109.068262. Epub 2010 Feb 26.
Initiation of a cell cycle in an adult neuron leads to cell death, placing great importance on the mechanisms that normally suppress the neuronal cell cycle. We have previously shown that the cyclin-dependent kinase Cdk5 is an important part of this process, but only when it is present in the nucleus. We report here that Cdk5 nuclear localization relies on its binding to the cyclin-dependent kinase inhibitor p27. Cdk5 has no intrinsic nuclear localization signal; in the absence of p27, two weak nuclear export signals that bind CRM1 cause it to shuttle to the cytoplasm. When a neuron is subjected to stress, such as exposure to beta-amyloid, the Cdk5-p27 interaction is lost, reducing Cdk5 levels in the nucleus and depriving the neuron of a major cell cycle suppression mechanism. Caspase-3 is activated within hours, but death is not immediate; elevated levels of cytoplasmic Cdk5 appear to retard neuronal death by a mechanism that may involve Bcl2. These data suggest a model in which Cdk5 exerts a double protective function in neurons: chronically suppressing the cell cycle when located in the nucleus and transiently delaying cell death in the cytoplasm.
在成年神经元中启动细胞周期会导致细胞死亡,因此正常抑制神经元细胞周期的机制显得尤为重要。我们之前已经表明,周期蛋白依赖性激酶 Cdk5 是该过程的重要组成部分,但只有当其存在于核内时才如此。我们在此报告,Cdk5 的核定位依赖于其与细胞周期蛋白依赖性激酶抑制剂 p27 的结合。Cdk5 本身没有内在的核定位信号;在没有 p27 的情况下,两个较弱的核输出信号与 CRM1 结合会导致 Cdk5 穿梭到细胞质中。当神经元受到压力,例如暴露于β-淀粉样蛋白时,Cdk5-p27 相互作用会丢失,从而降低核内 Cdk5 的水平,并剥夺神经元的主要细胞周期抑制机制。几小时内 caspase-3 被激活,但死亡并非即刻发生;细胞质中 Cdk5 水平升高似乎通过一种可能涉及 Bcl2 的机制延迟神经元死亡。这些数据表明了一个模型,即 Cdk5 在神经元中发挥双重保护功能:当位于核内时,它会持续抑制细胞周期,而在细胞质中则会短暂延迟细胞死亡。