Leissring M A, Paul B A, Parker I, Cotman C W, LaFerla F M
Center for the Neurobiology of Learning and Memory, Department of Psychobiology, University of California at Irvine, 92697-4545, USA.
J Neurochem. 1999 Mar;72(3):1061-8. doi: 10.1046/j.1471-4159.1999.0721061.x.
Perturbations in intracellular Ca2+ signaling may represent one mechanism underlying Alzheimer's disease (AD). The presenilin-1 gene (PS1), associated with the majority of early onset familial AD cases, has been implicated in this signaling pathway. Here we used the Xenopus oocyte expression system to investigate in greater detail the role of PS1 in intracellular Ca2+ signaling pathways. Treatment of cells expressing wild-type PS1 with a cell surface receptor agonist to stimulate the phosphoinositide second messenger pathway evoked Ca2+-activated Cl- currents that were significantly potentiated relative to controls. To determine which elements of the signal transduction pathway are responsible for the potentiation, we used photolysis of caged inositol 1,4,5-trisphosphate (IP3) and fluorescent Ca2+ imaging to demonstrate that PS1 potentiates IP3-mediated release of Ca2+ from internal stores. We show that an AD-linked mutation produces a potentiation in Ca2+ signaling that is significantly greater than that observed for wild-type PS1 and that cannot be attributed to differences in protein expression levels. Our findings support a role for PS1 in modulating IP3-mediated Ca2+ liberation and suggest that one pathophysiological mechanism by which PS1 mutations contribute to AD neurodegeneration may involve perturbations of this function.
细胞内钙离子信号传导的紊乱可能是阿尔茨海默病(AD)的潜在机制之一。与大多数早发性家族性AD病例相关的早老素-1基因(PS1)已被证实参与了这一信号通路。在此,我们利用非洲爪蟾卵母细胞表达系统更详细地研究PS1在细胞内钙离子信号通路中的作用。用细胞表面受体激动剂处理表达野生型PS1的细胞,以刺激磷酸肌醇第二信使通路,引发钙离子激活的氯离子电流,相对于对照组,该电流显著增强。为了确定信号转导通路中哪些元件导致了这种增强,我们使用了笼锁肌醇1,4,5-三磷酸(IP3)的光解和荧光钙离子成像技术,以证明PS1增强了IP3介导的细胞内钙库中钙离子的释放。我们发现,一种与AD相关的突变在钙离子信号传导中产生的增强作用明显大于野生型PS1,且不能归因于蛋白质表达水平的差异。我们的研究结果支持PS1在调节IP3介导的钙离子释放中发挥作用,并表明PS1突变导致AD神经退行性变的一种病理生理机制可能涉及这一功能的紊乱。