Gross A, MacKinnon R
Department of Neurobiology, Harvard Medical School, Boston, Massachusetts 02115, USA.
Neuron. 1996 Feb;16(2):399-406. doi: 10.1016/s0896-6273(00)80057-4.
In voltage-dependent K+ channels, each of the four identical subunits contributes one pore loop to the central ion selectivity unit at the interface between the subunits. The pore loop is also the target for scorpion venom peptide inhibitors. These inhibitors bind at the pore entryway between the four subunits and can assume any one of four orientations. The orientations become distinguishable only if the binding site symmetry is disrupted. We have used mutagenesis and site-directed chemical modification to alter pore loop amino acids in either one or four subunits. The effects of these alterations on inhibitor affinity define the eccentricity of amino acids in the pore entryway and imply a different secondary structure for the amino and carboxyl ends of the pore loop.
在电压依赖性钾离子通道中,四个相同亚基中的每一个都为位于亚基之间界面处的中央离子选择性单元贡献一个孔环。孔环也是蝎毒肽抑制剂的作用靶点。这些抑制剂在四个亚基之间的孔入口处结合,并且可以呈现四种取向中的任何一种。只有当结合位点对称性被破坏时,这些取向才变得可区分。我们已经使用诱变和定点化学修饰来改变一个或四个亚基中的孔环氨基酸。这些改变对抑制剂亲和力的影响确定了孔入口处氨基酸的偏心率,并暗示了孔环氨基端和羧基端不同的二级结构。