Patzke Holger, Maddineni Upendra, Ayala Ramses, Morabito Maria, Volker Janet, Dikkes Pieter, Ahlijanian Michael K, Tsai Li-Huei
Department of Pathology and Howard Hughes Medical Institute, Harvard Medical School, Boston, Massachusetts 02115, USA.
J Neurosci. 2003 Apr 1;23(7):2769-78. doi: 10.1523/JNEUROSCI.23-07-02769.2003.
Cyclin-dependent kinase 5 (Cdk5) is activated on binding of activator proteins p35 and p39. A N-terminally truncated p35, termed p25, is generated through cleavage by the Ca(2+)-dependent protease calpain after induction of ischemia in rat brain. p25 has been shown to accumulate in brains of patients with Alzheimer's disease and may contribute to A-beta peptide-mediated toxicity. Studies from transfected neurons as well as p35 and p25 transgenic mice have indicated that Cdk5, when activated by p25, gains some toxic function compared with p35/Cdk5. It remains unclear, however, whether p25/Cdk5 signaling additionally channels into pathways usually used by p35/Cdk5 and whether p25 is associated with a loss of p35 function. To clarify these issues, we have generated p25-transgenic mice in a p35-null background. We find that low levels of p25 during development induce a partial rescue of the p35-/- phenotype in several brain regions analyzed, including a rescue of cell positioning of a subset of neurons in the neocortex. In accordance with the partial rescue of brain anatomy, phosphorylation of the Cdk5 substrate mouse disabled 1 is partially restored during development. Besides this, p25/Cdk5 fails to phosphorylate other substrates that are normally phosphorylated by p35/Cdk5. Our results show that p25 can substitute for p35/Cdk5 under certain circumstances during development. In addition, they suggest that p25 may have lost some functions of p35.
细胞周期蛋白依赖性激酶5(Cdk5)在与激活蛋白p35和p39结合时被激活。一种N端截短的p35,称为p25,是在大鼠脑缺血诱导后由Ca(2+)依赖性蛋白酶钙蛋白酶切割产生的。已证明p25在阿尔茨海默病患者的大脑中积累,可能促成β淀粉样肽介导的毒性。来自转染神经元以及p35和p25转基因小鼠的研究表明,与p35/Cdk5相比,Cdk5在被p25激活时获得了一些毒性功能。然而,尚不清楚p25/Cdk5信号是否额外进入p35/Cdk5通常使用的途径,以及p25是否与p35功能丧失有关。为了阐明这些问题,我们在p35基因敲除的背景下培育了p25转基因小鼠。我们发现,发育过程中低水平的p25在分析的几个脑区诱导了p35 - / - 表型的部分挽救,包括新皮质中一部分神经元细胞定位的挽救。与脑解剖结构的部分挽救一致,Cdk5底物小鼠失活蛋白1的磷酸化在发育过程中部分恢复。除此之外,p25/Cdk5不能磷酸化其他通常由p35/Cdk5磷酸化的底物。我们的结果表明,在发育过程中的某些情况下,p25可以替代p35/Cdk5。此外,它们表明p25可能已经失去了p35的一些功能。