Dreyer Jacqueline, Schleicher Michael, Tappe Anke, Schilling Kirstin, Kuner Thomas, Kusumawidijaja Grace, Müller-Esterl Werner, Oess Stefanie, Kuner Rohini
Department of Molecular Pharmacology, Pharmacology Institute, University of Heidelberg, 69120 Heidelberg, Germany.
J Neurosci. 2004 Nov 17;24(46):10454-65. doi: 10.1523/JNEUROSCI.2265-04.2004.
Mechanisms governing the activity of neuronal nitric oxide synthase (nNOS), the major source of nitric oxide (NO) in the nervous system, are not completely understood. We report here a protein-protein interaction between nNOS and NOSIP (nitric oxide synthase-interacting protein) in rat brain in vivo. NOSIP and nNOS are concentrated in neuronal synapses and demonstrate significant colocalization in various regions of the central and peripheral nervous systems. NOSIP produces a significant reduction in nNOS activity in a neuroepithelioma cell line stably expressing nNOS. Furthermore, overexpression of NOSIP in cultured primary neurons reduces the availability of nNOS in terminal dendrites. These results thus suggest that the interaction between NOSIP and nNOS is functionally involved in endogenous mechanisms regulating NO synthesis. Furthermore, we found that the subcellular distribution and expression levels of NOSIP are dynamically regulated by neuronal activity in vitro as well as in vivo, suggesting that NOSIP may contribute to a mechanism via which neuronal activity regulates the synaptic availability and activity of nNOS.
神经系统中一氧化氮(NO)的主要来源——神经元型一氧化氮合酶(nNOS)的活性调控机制尚未完全明确。我们在此报告大鼠脑内nNOS与NOSIP(一氧化氮合酶相互作用蛋白)之间的蛋白质-蛋白质相互作用。NOSIP和nNOS集中于神经元突触,并在中枢和外周神经系统的各个区域显示出显著的共定位。在稳定表达nNOS的神经上皮瘤细胞系中,NOSIP可使nNOS活性显著降低。此外,在原代培养神经元中过表达NOSIP会减少终末树突中nNOS的可利用性。因此,这些结果表明NOSIP与nNOS之间的相互作用在功能上参与了调节NO合成的内源性机制。此外,我们发现NOSIP的亚细胞分布和表达水平在体外及体内均受到神经元活动的动态调节,这表明NOSIP可能参与了一种神经元活动调节nNOS突触可利用性及活性的机制。