Casamassima Maria, D'Adamo M Cristina, Pessia Mauro, Tucker Stephen J
Istituto di Ricerche Farmacologiche "Mario Negri," Consorzio Mario Negri Sud, 66030 Santa Maria Imbaro (Chieti), Italy.
J Biol Chem. 2003 Oct 31;278(44):43533-40. doi: 10.1074/jbc.M306596200. Epub 2003 Aug 15.
Heteromultimerization between different potassium channel subunits can generate channels with novel functional properties and thus contributes to the rich functional diversity of this gene family. The inwardly rectifying potassium channel subunit Kir5.1 exhibits highly selective heteromultimerization with Kir4.1 to generate heteromeric Kir4.1/Kir5.1 channels with unique rectification and kinetic properties. These novel channels are also inhibited by intracellular pH within the physiological range and are thought to play a key role in linking K+ and H+ homeostasis by the kidney. However, the mechanisms that control heteromeric K+ channel assembly and the structural elements that generate their unique functional properties are poorly understood. In this study we identify residues at an intersubunit interface between the cytoplasmic domains of Kir5.1 and Kir4.1 that influence the novel rectification and gating properties of heteromeric Kir4.1/Kir5.1 channels and that also contribute to their pH sensitivity. Furthermore, this interaction presents a structural mechanism for the functional coupling of these properties and explains how specific heteromeric interactions can contribute to the novel functional properties observed in heteromeric Kir channels. The highly conserved nature of this structural association between Kir subunits also has implications for understanding the general mechanisms of Kir channel gating and their regulation by intracellular pH.
不同钾通道亚基之间的异源多聚化可产生具有新功能特性的通道,从而促成了该基因家族丰富的功能多样性。内向整流钾通道亚基Kir5.1与Kir4.1表现出高度选择性的异源多聚化,以生成具有独特整流和动力学特性的异源Kir4.1/Kir5.1通道。这些新型通道在生理范围内也受到细胞内pH的抑制,并且被认为在肾脏连接K⁺和H⁺稳态方面发挥关键作用。然而,控制异源钾通道组装的机制以及产生其独特功能特性的结构元件仍知之甚少。在本研究中,我们确定了Kir5.1和Kir4.1胞质结构域之间亚基间界面处的残基,这些残基影响异源Kir4.1/Kir5.1通道的新型整流和门控特性,并且也促成了它们的pH敏感性。此外,这种相互作用为这些特性的功能偶联提供了一种结构机制,并解释了特定的异源相互作用如何促成在异源Kir通道中观察到的新型功能特性。Kir亚基之间这种结构关联的高度保守性质对于理解Kir通道门控的一般机制及其受细胞内pH调节也具有重要意义。