Reddi Ravikumar, Matulef Kimberly, Riederer Erika A, Whorton Matthew R, Valiyaveetil Francis I
Program in Chemical Biology, Department of Chemical Physiology and Biochemistry, Oregon Health & Science University, 3181 SW Sam Jackson Park Rd, Portland, OR 97239, USA.
Vollum Institute, Oregon Health & Science University, 3181 SW Sam Jackson Park Rd, Portland, OR 97239, USA.
Sci Adv. 2022 Apr 22;8(16):eabm8804. doi: 10.1126/sciadv.abm8804.
C-type inactivation is a process by which ion flux through a voltage-gated K (K) channel is regulated at the selectivity filter. While prior studies have indicated that C-type inactivation involves structural changes at the selectivity filter, the nature of the changes has not been resolved. Here, we report the crystal structure of the K1.2 channel in a C-type inactivated state. The structure shows that C-type inactivation involves changes in the selectivity filter that disrupt the outer two ion binding sites in the filter. The changes at the selectivity filter propagate to the extracellular mouth and the turret regions of the channel pore. The structural changes observed are consistent with the functional hallmarks of C-type inactivation. This study highlights the intricate interplay between K occupancy at the ion binding sites and the interactions of the selectivity filter in determining the balance between the conductive and the inactivated conformations of the filter.
C型失活是一种通过电压门控钾(K)通道在选择性过滤器处调节离子通量的过程。虽然先前的研究表明C型失活涉及选择性过滤器的结构变化,但这些变化的本质尚未得到解决。在此,我们报告处于C型失活状态的K1.2通道的晶体结构。该结构表明,C型失活涉及选择性过滤器的变化,这些变化破坏了过滤器中外部的两个离子结合位点。选择性过滤器的变化传播到通道孔的细胞外口和炮塔区域。观察到的结构变化与C型失活的功能特征一致。这项研究突出了离子结合位点处钾占据情况与选择性过滤器相互作用之间复杂入微的相互关系,这种相互关系决定了过滤器导电构象和失活构象之间的平衡。