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Ion Channels in Innate and Adaptive Immunity

机译:先天和适应性免疫中的离子通道

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Ion channels and transporters mediate the transport of charged ions across hydrophobic lipid membranes. In immune cells, divalent cations such as calcium, magnesium, and zinc have important roles as second messengers to regulate intracellular signaling pathways. By contrast, monovalent cations such as sodium and potassium mainly regulate the membrane potential, which indirectly controls the influx of calcium and immune cell signaling. Studies investigating human patients with mutations in ion channels and transporters, analysis of gene-targeted mice, or pharmacological experiments with ion channel inhibitors have revealed important roles of ionic signals in lymphocyte development and in innate and adaptive immune responses. We here review the mechanisms underlying the function of ion channels and transporters in lymphocytes and innate immune cells and discuss their roles in lymphocyte development, adaptive and innate immune responses. and autoimmunity, as well as recent efforts to develop pharmacological inhibitors of ion channels for immunomodulatory therapy.
机译:离子通道和转运蛋白介导带电离子跨疏水脂质膜的转运。在免疫细胞中,钙,镁和锌等二价阳离子作为调节细胞内信号传导途径的第二信使具有重要作用。相比之下,一价阳离子(例如钠和钾)主要调节膜电位,从而间接控制钙的流入和免疫细胞的信号传导。对人类患者进行离子通道和转运蛋白突变,基因靶向小鼠分析或使用离子通道抑制剂进行药理实验的研究表明,离子信号在淋巴细胞发育以及先天性和适应性免疫应答中具有重要作用。我们在这里回顾了淋巴细胞和先天免疫细胞中离子通道和转运蛋白功能的基本机制,并讨论了它们在淋巴细胞发育,适应性和先天免疫反应中的作用。和自身免疫,以及最近为开发用于免疫调节疗法的离子通道的药理抑制剂所做的努力。

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