Paukert Martin, Babini Elena, Pusch Michael, Gründer Stefan
Department of Physiology II, Gmelinstr. 5, D-72076 Tübingen, Germany.
J Gen Physiol. 2004 Oct;124(4):383-94. doi: 10.1085/jgp.200308973.
Acid-sensing ion channels ASIC1a and ASIC1b are ligand-gated ion channels that are activated by H+ in the physiological range of pH. The apparent affinity for H+ of ASIC1a and 1b is modulated by extracellular Ca2+ through a competition between Ca2+ and H+. Here we show that, in addition to modulating the apparent H+ affinity, Ca2+ blocks ASIC1a in the open state (IC50 approximately 3.9 mM at pH 5.5), whereas ASIC1b is blocked with reduced affinity (IC50 > 10 mM at pH 4.7). Moreover, we report the identification of the site that mediates this open channel block by Ca2+. ASICs have two transmembrane domains. The second transmembrane domain M2 has been shown to form the ion pore of the related epithelial Na+ channel. Conserved topology and high homology in M2 suggests that M2 forms the ion pore also of ASICs. Combined substitution of an aspartate and a glutamate residue at the beginning of M2 completely abolished block by Ca2+ of ASIC1a, showing that these two amino acids (E425 and D432) are crucial for Ca2+ block. It has previously been suggested that relief of Ca2+ block opens ASIC3 channels. However, substitutions of E425 or D432 individually or in combination did not open channels constitutively and did not abolish gating by H+ and modulation of H+ affinity by Ca2+. These results show that channel block by Ca2+ and H+ gating are not intrinsically linked.
酸敏感离子通道ASIC1a和ASIC1b是配体门控离子通道,在生理pH范围内被H⁺激活。ASIC1a和1b对H⁺的表观亲和力通过Ca²⁺与H⁺之间的竞争被细胞外Ca²⁺调节。在此我们表明,除了调节表观H⁺亲和力外,Ca²⁺在开放状态下阻断ASIC1a(在pH 5.5时IC50约为3.9 mM),而ASIC1b被阻断的亲和力降低(在pH 4.7时IC50>10 mM)。此外,我们报告了介导Ca²⁺对该开放通道阻断的位点的鉴定。ASICs有两个跨膜结构域。第二个跨膜结构域M2已被证明形成相关上皮Na⁺通道的离子孔。M2中保守的拓扑结构和高度同源性表明M2也形成ASICs的离子孔。在M2起始处天冬氨酸和谷氨酸残基的联合取代完全消除了Ca²⁺对ASIC1a的阻断,表明这两个氨基酸(E425和D432)对Ca²⁺阻断至关重要。先前有人提出Ca²⁺阻断的解除会打开ASIC3通道。然而,E425或D432单独或联合取代均不会组成性地打开通道,也不会消除H⁺门控以及Ca²⁺对H⁺亲和力的调节。这些结果表明Ca²⁺对通道的阻断与H⁺门控没有内在联系。