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深孔突变对苯烷基胺作用于Kv1.3钾通道的影响。

The effect of deep pore mutations on the action of phenylalkylamines on the Kv1.3 potassium channel.

作者信息

Rauer H, Grissmer S

机构信息

Department of Physiology and Biophysics, University of California, Irvine 92697-4560, USA.

出版信息

Br J Pharmacol. 1999 Jul;127(5):1065-74. doi: 10.1038/sj.bjp.0702599.

Abstract

We investigated the action of the phenylalkylamines verapamil and N-methyl-verapamil on the Kv1.3 potassium channel using the whole-cell configuration of the patch-clamp technique. Our goal was to identify their binding as a prerequisite for using the phenylalkylamines as small, well-defined molecular probes, not only to expand the structural findings made with peptide toxins or by crystallization, but also to use them as lead compounds for the generation of more potent and therefore more specific K+ channel modulators. Competition experiments with charybdotoxin, known to interact with external residues of Kv1.3, showed no interaction with verapamil. The internal application of quarternary N-methyl-verapamil in combination with verapamil suggested competition for the same internal binding site. Verapamil affinity was decreased 6 fold by a mutation (M395V) in a region of the internal pore which forms part of the internal tetraethylammonium (TEA+) binding site, although mutations at neighbouring residues (T396 and T397) were without effect. Modification of C-type inactivation by mutations in the internal pore suggest that this region participates in the inactivation process. The action of phenylalkylamines and local anaesthetics on L-type Ca2+ channels and Na channels, respectively, and verapamil on Kv1.3 indicate very similar blocking mechanisms. This might allow the use of these compounds as molecular probes to map the internal vestibule of all three channel types.

摘要

我们使用膜片钳技术的全细胞模式,研究了苯烷基胺类药物维拉帕米和N-甲基维拉帕米对Kv1.3钾通道的作用。我们的目标是确定它们的结合情况,这是将苯烷基胺类药物用作小型、明确的分子探针的前提条件,不仅是为了扩展使用肽毒素或通过结晶获得的结构研究结果,也是为了将它们用作先导化合物,以生成更有效、因此更具特异性的钾通道调节剂。用已知与Kv1.3外部残基相互作用的蝎毒素进行的竞争实验表明,它与维拉帕米没有相互作用。将季铵化的N-甲基维拉帕米与维拉帕米联合进行胞内应用,提示它们竞争相同的胞内结合位点。内部孔道中形成内部四乙铵(TEA+)结合位点一部分的区域发生突变(M395V)后,维拉帕米的亲和力降低了6倍,而相邻残基(T396和T397)的突变则没有影响。内部孔道中的突变对C型失活的影响表明,该区域参与了失活过程。苯烷基胺类药物和局部麻醉药分别对L型钙通道和钠通道的作用,以及维拉帕米对Kv1.

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