Instituto de Investigaciones en Ingeniería Genética y Biología Molecular ''Dr. Héctor N. Torres'' (INGEBI), Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Buenos Aires, Argentina.
Cell Biology and Biophysics Unit, European Molecular Biology Laboratory, Heidelberg, Germany.
Cell Mol Life Sci. 2024 Aug 9;81(1):337. doi: 10.1007/s00018-024-05381-2.
The α9α10 nicotinic cholinergic receptor (nAChR) is a ligand-gated pentameric cation-permeable ion channel that mediates synaptic transmission between descending efferent neurons and mechanosensory inner ear hair cells. When expressed in heterologous systems, α9 and α10 subunits can assemble into functional homomeric α9 and heteromeric α9α10 receptors. One of the differential properties between these nAChRs is the modulation of their ACh-evoked responses by extracellular calcium (Ca). While α9 nAChRs responses are blocked by Ca, ACh-evoked currents through α9α10 nAChRs are potentiated by Ca in the micromolar range and blocked at millimolar concentrations. Using chimeric and mutant subunits, together with electrophysiological recordings under two-electrode voltage-clamp, we show that the TM2-TM3 loop of the rat α10 subunit contains key structural determinants responsible for the potentiation of the α9α10 nAChR by extracellular Ca. Moreover, molecular dynamics simulations reveal that the TM2-TM3 loop of α10 does not contribute to the Ca potentiation phenotype through the formation of novel Ca binding sites not present in the α9 receptor. These results suggest that the TM2-TM3 loop of α10 might act as a control element that facilitates the intramolecular rearrangements that follow ACh-evoked α9α10 nAChRs gating in response to local and transient changes of extracellular Ca concentration. This finding might pave the way for the future rational design of drugs that target α9α10 nAChRs as otoprotectants.
α9α10 型烟碱型乙酰胆碱受体(nAChR)是一种配体门控的五聚体阳离子可渗透离子通道,介导下行传出神经元和机械敏感内耳毛细胞之间的突触传递。当在异源系统中表达时,α9 和 α10 亚基可以组装成功能性同源α9 和异源α9α10 受体。这些 nAChR 之间的一个区别性质是它们的 ACh 诱发反应被细胞外钙(Ca)调节。虽然 α9 nAChR 的反应被 Ca 阻断,但 α9α10 nAChR 的 ACh 诱发电流在微摩尔范围内被 Ca 增强,并在毫摩尔浓度下被阻断。使用嵌合体和突变亚基,以及双电极电压钳下的电生理记录,我们表明大鼠α10 亚基的 TM2-TM3 环包含负责细胞外 Ca 增强α9α10 nAChR 的关键结构决定因素。此外,分子动力学模拟表明,α10 的 TM2-TM3 环通过形成不存在于 α9 受体中的新的 Ca 结合位点,不会导致 Ca 增强表型。这些结果表明,α10 的 TM2-TM3 环可能作为一个控制元件,促进 ACh 诱发的 α9α10 nAChR 门控后紧随的分子内重排,以响应细胞外 Ca 浓度的局部和瞬时变化。这一发现可能为未来靶向 α9α10 nAChR 的药物的合理设计铺平道路,作为耳保护剂。