Lam Hung D, Lemay Anne-Marie, Briggs M Martha, Yung Marco, Hill Ceredwyn E
Department of Medicine, Queen's University, Kingston, ON, Canada K7L 5G2.
Biochim Biophys Acta. 2006 Nov;1758(11):1837-45. doi: 10.1016/j.bbamem.2006.07.005. Epub 2006 Jul 21.
Inwardly rectifying K+ channels (Kir) comprise seven subfamilies that can be subdivided further on the basis of cytosolic pH (pHi) sensitivity, rectification strength and kinetics, and resistance to run-down. Although distinct residues within each channel subunit define these properties, heteromeric association with other Kir subunits can modulate them. We identified such an effect in the wild-type forms of Kir4.2 and Kir5.1 and used this to further understand how the functional properties of Kir channels relate to their structures. Kir4.2 and a Kir4.2-Kir5.1 fusion protein were expressed in HEK293 cells. Inward currents from Kir4.2 were stable over 10 min and pHi-insensitive (pH 6 to 8). Conversely, currents from Kir4.2-Kir5.1 exhibited a pHi-sensitive run-down at slightly acidic pHi. At pHi 7.2, currents in response to voltage steps positive to EK were essentially time independent for Kir4.2 indicating rapid block by Mg2+. Coexpression with Kir5.1 significantly increased the blocking time constant, and increased steady-state outward current characteristic of weak rectifiers. Recovery from blockade at negative potentials was voltage dependent and 2 to 10 times slower in the homomeric channel. These results show that Kir5.1 converts Kir4.2 from a strong to a weak rectifier, rendering it sensitive to pHi, and suggesting that Kir5.1 plays a role in fine-tuning Kir4.2 activity.
内向整流钾通道(Kir)由七个亚家族组成,可根据胞质pH(pHi)敏感性、整流强度和动力学以及抗衰减能力进一步细分。尽管每个通道亚基内的不同残基决定了这些特性,但与其他Kir亚基的异源缔合可以对其进行调节。我们在Kir4.2和Kir5.1的野生型形式中发现了这种效应,并利用它进一步了解Kir通道的功能特性与其结构之间的关系。Kir4.2和一种Kir4.2-Kir5.1融合蛋白在HEK293细胞中表达。Kir4.2的内向电流在10分钟内保持稳定且对pHi不敏感(pH值为6至8)。相反,Kir4.2-Kir5.1的电流在略呈酸性的pHi下表现出对pHi敏感的衰减。在pHi 7.2时,对于Kir4.2,响应正向于EK的电压阶跃的电流基本与时间无关,表明被Mg2+快速阻断。与Kir5.1共表达显著增加了阻断时间常数,并增加了弱整流器的稳态外向电流特性。在负电位下从阻断中恢复是电压依赖性的,并且在同聚体通道中慢2至10倍。这些结果表明,Kir5.1将Kir4.2从强整流器转变为弱整流器,使其对pHi敏感,并表明Kir5.1在微调Kir4.2活性中起作用。