Gonzales Eric B, Kawate Toshimitsu, Gouaux Eric
Vollum Institute, Oregon Health and Science University, 3181 Southwest Sam Jackson Park Road, Portland, Oregon 97239, USA.
Nature. 2009 Jul 30;460(7255):599-604. doi: 10.1038/nature08218.
Acid-sensing ion channels are proton-activated, sodium-selective channels composed of three subunits, and are members of the superfamily of epithelial sodium channels, mechanosensitive and FMRF-amide peptide-gated ion channels. These ubiquitous eukaryotic ion channels have essential roles in biological activities as diverse as sodium homeostasis, taste and pain. Despite their crucial roles in biology and their unusual trimeric subunit stoichiometry, there is little knowledge of the structural and chemical principles underlying their ion channel architecture and ion-binding sites. Here we present the structure of a functional acid-sensing ion channel in a desensitized state at 3 A resolution, the location and composition of the approximately 8 A 'thick' desensitization gate, and the trigonal antiprism coordination of caesium ions bound in the extracellular vestibule. Comparison of the acid-sensing ion channel structure with the ATP-gated P2X(4) receptor reveals similarity in pore architecture and aqueous vestibules, suggesting that there are unanticipated yet common structural and mechanistic principles.
酸敏感离子通道是由三个亚基组成的质子激活、钠选择性通道,属于上皮钠通道、机械敏感通道和FMRF酰胺肽门控离子通道超家族的成员。这些普遍存在的真核离子通道在钠稳态、味觉和疼痛等多种生物活动中发挥着重要作用。尽管它们在生物学中起着关键作用,且具有不寻常的三聚体亚基化学计量,但对于其离子通道结构和离子结合位点背后的结构和化学原理却知之甚少。在此,我们展示了处于脱敏状态的功能性酸敏感离子通道在3埃分辨率下的结构、约8埃“厚”的脱敏门的位置和组成,以及结合在细胞外前庭的铯离子的三角反棱柱配位。将酸敏感离子通道结构与ATP门控的P2X(4)受体进行比较,揭示了孔道结构和水性前庭的相似性,这表明存在意想不到但共同的结构和机制原理。