Spassova M, Lu Z
Department of Physiology, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.
J Gen Physiol. 1999 Sep;114(3):415-26. doi: 10.1085/jgp.114.3.415.
To understand the role of permeating ions in determining blocking ion-induced rectification, we examined block of the ROMK1 inward-rectifier K+ channel by intracellular tetraethylammonium in the presence of various alkali metal ions in both the extra- and intracellular solutions. We found that the channel exhibits different degrees of rectification when different alkali metal ions (all at 100 mM) are present in the extra- and intracellular solution. A quantitative analysis shows that an external ion site in the ROMK1 pore binds various alkali metal ions (Na+, K+, Rb+, and Cs+) with different affinities, which can in turn be altered by the binding of different permeating ions at an internal site through a nonelectrostatic mechanism. Consequently, the external site is saturated to a different level under the various ionic conditions. Since rectification is determined by the movement of all energetically coupled ions in the transmembrane electrical field along the pore, different degrees of rectification are observed in various combinations of extra- and intracellular permeant ions. Furthermore, the external and internal ion-binding sites in the ROMK1 pore appear to have different ion selectivity: the external site selects strongly against the smaller Na+, but only modestly among the three larger ions, whereas the internal site interacts quite differently with the larger K+ and Rb+ ions.
为了理解渗透离子在决定阻断离子诱导的整流中的作用,我们在细胞外和细胞内溶液中存在各种碱金属离子的情况下,研究了细胞内四乙铵对ROMK1内向整流钾通道的阻断作用。我们发现,当细胞外和细胞内溶液中存在不同的碱金属离子(均为100 mM)时,该通道表现出不同程度的整流。定量分析表明,ROMK1孔中的一个外部离子位点以不同的亲和力结合各种碱金属离子(Na+、K+、Rb+和Cs+),而这又可以通过非静电机制被内部位点上不同渗透离子的结合所改变。因此,在各种离子条件下,外部位点被饱和到不同的水平。由于整流是由跨膜电场中所有能量耦合离子沿孔的移动决定的,因此在细胞外和细胞内渗透离子的各种组合中观察到不同程度的整流。此外,ROMK1孔中的外部和内部离子结合位点似乎具有不同的离子选择性:外部位点强烈排斥较小的Na+,但在三种较大的离子中选择性较弱,而内部位点与较大的K+和Rb+离子的相互作用则大不相同。