Anzai Naohiko, Deval Emmanuel, Schaefer Lionel, Friend Valerie, Lazdunski Michel, Lingueglia Eric
Institut de Pharmacologie Moléculaire et Cellulaire, CNRS-UMR6097, 660 route des Lucioles, Sophia Antipolis, 06560 Valbonne, France.
J Biol Chem. 2002 May 10;277(19):16655-61. doi: 10.1074/jbc.M201087200. Epub 2002 Feb 28.
Acid-sensing ion channels (ASICs) are cationic channels activated by extracellular pH. They are present in the brain, where they are thought to participate in signal transduction associated with local pH variations, and in sensory neurons, where they have been involved in pain perception associated with tissue acidosis and in mechanoperception. The ASIC3 subunit is mainly expressed in dorsal root ganglion neurons. Its expression is associated with a rapidly inactivating current followed by a slowly activating sustained current thought to be required for the tonic sensation of pain caused by acids. We report here the interaction of this channel subunit with the multivalent PDZ (PSD-95 Drosophila discs-large protein, Zonula occludens protein 1) domain-containing protein CIPP. This interaction requires the C-terminal region of ASIC3 and the fourth PDZ domain of CIPP. Co-expression of CIPP and ASIC3 in COS cells increases the maximal ASIC3 peak current density by a factor of 5 and slightly shifts the pH(0.5) for activation from pH 6.2 to pH 6.4. CIPP mRNA is found at a significant level in the same dorsal root ganglion neuronal cell population that expresses the ASIC3 subunit, i.e. mainly in the small nociceptive neurons. CIPP is thus a scaffolding protein that could both enhance the surface expression of ASIC3 and bring together ASIC3 and functionally related proteins in the membrane of sensory neurons.
酸敏感离子通道(ASICs)是由细胞外pH激活的阳离子通道。它们存在于大脑中,据认为在大脑中参与与局部pH变化相关的信号转导;还存在于感觉神经元中,在感觉神经元中它们参与了与组织酸中毒相关的疼痛感知以及机械感觉。ASIC3亚基主要在背根神经节神经元中表达。其表达与一种快速失活电流相关,随后是一种缓慢激活的持续电流,据认为这是酸引起的持续性疼痛感觉所必需的。我们在此报告该通道亚基与含多价PDZ(PSD - 95、果蝇盘大蛋白、紧密连接蛋白1)结构域的蛋白CIPP的相互作用。这种相互作用需要ASIC3的C末端区域和CIPP的第四个PDZ结构域。CIPP和ASIC3在COS细胞中共表达可使ASIC3的最大峰值电流密度增加5倍,并使激活的pH(0.5)从pH 6.2轻微移至pH 6.4。在表达ASIC3亚基的相同背根神经节神经元细胞群体中发现了显著水平的CIPP mRNA,即主要在小的伤害性感受神经元中。因此,CIPP是一种支架蛋白,它既可以增强ASIC3的表面表达,又能在感觉神经元膜中将ASIC3和功能相关蛋白聚集在一起。