Chapman Mark L, Blanke Marie L, Krovetz Howard S, VanDongen Antonius M J
Department of Pharmacology, Duke University, Durham, NC, USA.
Pflugers Arch. 2006 Mar;451(6):776-92. doi: 10.1007/s00424-005-1515-2. Epub 2005 Nov 10.
K+ channels achieve exquisite ion selectivity without jeopardizing efficient permeation by employing multiple, interacting K+-binding sites. Introduction ofa cadmium (Cd2+)-binding site in the external vestibule of Kv2.1 (drk1), allowed us to functionally characterize a binding site for external monovalent cations. Permeant ions displayed higher affinity for this site than non-permeant monovalent cations, although the selectivity profile was different from that of the channel. Point mutations identified the highly conserved aspartate residue immediately following the selectivity filter as a critical determinant of the antagonism between external K+ and Cd2+ ions. A conservative mutation at this position (D378E) significantly affected the open-state stability. Moreover, the mean open time was found to be modulated by external K+ concentration, suggesting a coupling between channel closing and the permeation process. Reducing the Rb+ conductance by mutating the selectivity filter to the sequence found inKv4.1, also significantly reduced the effectiveness ofRb+ ions to antagonize Cd2+ inhibition, thereby implicating the selectivity filter as the site at which K+ions exert their antagonistic effect on Cd2+ block. The equivalent of D378 in KcsA, D80, takes part in an inter-subunit hydrogen-bond network that allows D80to functionally interact with the selectivity filter. The results suggest that external K+ ions antagonize Cd2+inhibition (in I379C) and modulate the mean open time(in the wild-type Kv2.1) by altering the occupancy profile of the K+-binding sites in the selectivity filter.
钾离子通道通过利用多个相互作用的钾离子结合位点,在不影响高效通透的情况下实现了极高的离子选择性。在Kv2.1(drk1)的外部前庭引入一个镉(Cd2+)结合位点,使我们能够从功能上表征外部单价阳离子的一个结合位点。尽管通透离子对该位点的选择性与通道不同,但它们对该位点的亲和力高于非通透单价阳离子。点突变确定了选择性过滤器之后紧邻的高度保守天冬氨酸残基是外部钾离子和镉离子之间拮抗作用的关键决定因素。该位置的保守突变(D378E)显著影响了开放状态的稳定性。此外,发现平均开放时间受外部钾离子浓度的调节,这表明通道关闭与通透过程之间存在耦合。通过将选择性过滤器突变为Kv4.1中的序列来降低铷离子电导,也显著降低了铷离子拮抗镉离子抑制的有效性,从而表明选择性过滤器是钾离子对镉离子阻滞发挥拮抗作用的位点。KcsA中与D378等效的D80参与了一个亚基间氢键网络,该网络使D80能够与选择性过滤器进行功能相互作用。结果表明,外部钾离子通过改变选择性过滤器中钾离子结合位点的占据情况来拮抗镉离子抑制(在I379C中)并调节平均开放时间(在野生型Kv2.1中)。