Bässler E L, Ngo-Anh T J, Geisler H S, Ruppersberg J P, Gründer S
Department of Otolaryngology, Research Group of Sensory Physiology, Röntgenweg 11, D-72076 Tübingen, Germany.
J Biol Chem. 2001 Sep 7;276(36):33782-7. doi: 10.1074/jbc.M104030200. Epub 2001 Jul 11.
Acid-sensing ion channels (ASICs) are activated by extracellular protons and are involved in neurotransmission in the central nervous system, in pain perception, as well as in mechanotransduction. Six different ASIC subunits have been cloned to date, which are encoded by four genes (ASIC1-ASIC4). Proton-gated currents have been described in isolated neurons from sensory ganglia as well as from central nervous system. However, it is largely unclear which of the cloned ASIC subunits underlie these native proton-gated currents. Recently, a splice variant, ASIC-beta, has been described for ASIC1a. In this variant about one-third of the protein is exchanged at the N terminus. Here we show that ASIC-beta has a longer N terminus than previously reported, extending the sequence divergence between ASIC1a and this new variant (ASIC1b). We investigated in detail kinetic and selectivity properties of ASIC1b in comparison to ASIC1a. Kinetics is similar for ASIC1b and ASIC1a. Ca(2+) permeability of ASIC1a is low, whereas ASIC1b is impermeable to Ca(2+). Currents through ASIC1a resemble currents, which have been described in sensory and central neurons, whereas the significance of ASIC1b remains to be established. Moreover, we show that a pre-transmembrane 1 domain controls the permeability to divalent cations in ASIC1, contributing to our understanding of the pore structure of these channels.
酸敏感离子通道(ASICs)由细胞外质子激活,参与中枢神经系统的神经传递、痛觉感知以及机械转导。迄今为止,已克隆出六种不同的ASIC亚基,它们由四个基因(ASIC1 - ASIC4)编码。在感觉神经节以及中枢神经系统的分离神经元中均已描述过质子门控电流。然而,目前尚不清楚这些天然质子门控电流是由哪些已克隆的ASIC亚基构成。最近,已报道了ASIC1a的一种剪接变体ASIC - β。在这种变体中,约三分之一的蛋白质在N端被替换。在此我们表明,ASIC - β的N端比先前报道的更长,这扩大了ASIC1a与这种新变体(ASIC1b)之间的序列差异。我们详细研究了ASIC1b与ASIC1a相比的动力学和选择性特性。ASIC1b和ASIC1a的动力学相似。ASIC1a对Ca(2+)的通透性较低,而ASIC1b对Ca(2+)不通透。通过ASIC1a的电流类似于在感觉神经元和中枢神经元中所描述的电流,而ASIC1b的意义仍有待确定。此外,我们表明跨膜前1结构域控制ASIC1中对二价阳离子的通透性,这有助于我们理解这些通道的孔结构。