Irie Katsumasa
Department of Biophysical Chemistry, School of Pharmaceutical Sciences, Wakayama Medical University.
Yakugaku Zasshi. 2024;144(5):521-526. doi: 10.1248/yakushi.23-00178-3.
Neural activity generates essential responses, such as thinking, memory formation, and muscle contraction. It is controlled by the well-coordinated activity of various cation-selective channels of the cell membrane. The divalent cation block plays an essential role in various tetrameric ion channels. For example, N-methyl-D-aspartic acid receptors, which are tetrameric ion channels involved in memory formation, are inhibited by magnesium ions. Divalent cations are thought to bind in the ion pathway of the ion channel and as a consequence block the channel current, however, direct observation of such a block has not been reported yet. As a consequence, the behavior of these blocking divalent cations remains poorly understood. NavAb, a similar tetrameric sodium channel cloned from Arcobacter butzleri, is one of the most structurally analyzed tetrameric channels that is not inhibited by divalent cations. In this study, we elucidated the molecular mechanism of the divalent cation block by reproducing the divalent cation block in NavAb. The X-ray crystal structure of divalent-cation-block mutants show electron density in the ion transmission pathway of the divalent cation blocked mutants, indicating that the mutations increasing the hydrophilicity of the inner vestibule of the pore domain enable a divalent cation to stack into the ion pathway. In molecular dynamics simulations, the stacked calcium ion repels the sodium ions near the channel lumen's entrance at the selective filter's bottom. These results suggest the primary process of the divalent cation block mechanism in tetrameric cation channels and suggest a process of functional acquisition in ion channel evolution.
神经活动产生诸如思考、记忆形成和肌肉收缩等重要反应。它由细胞膜各种阳离子选择性通道的良好协调活动所控制。二价阳离子阻滞在各种四聚体离子通道中起着重要作用。例如,参与记忆形成的四聚体离子通道N-甲基-D-天冬氨酸受体受到镁离子的抑制。二价阳离子被认为结合在离子通道的离子传导路径中,从而阻断通道电流,然而,尚未有关于这种阻滞的直接观察报道。因此,这些阻滞性二价阳离子的行为仍知之甚少。NavAb是一种从布氏嗜盐碱杆菌克隆的类似四聚体钠通道,是结构分析最深入的不受二价阳离子抑制的四聚体通道之一。在本研究中,我们通过在NavAb中重现二价阳离子阻滞来阐明二价阳离子阻滞的分子机制。二价阳离子阻滞突变体的X射线晶体结构在二价阳离子阻滞突变体的离子传导路径中显示出电子密度,表明增加孔结构域内部前庭亲水性的突变使二价阳离子能够堆积到离子传导路径中。在分子动力学模拟中,堆积的钙离子在选择性过滤器底部排斥通道腔入口附近的钠离子。这些结果揭示了四聚体阳离子通道中二价阳离子阻滞机制的主要过程,并提示了离子通道进化中的功能获得过程。