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一种人类脑内向整流钾通道(hIRK1)的克隆、定位及功能表达

Cloning, localization, and functional expression of a human brain inward rectifier potassium channel (hIRK1).

作者信息

Tang W, Qin C L, Yang X C

机构信息

Department of CNS Research, Lederle Laboratories, American Cyanamid Co., NY 10965, USA.

出版信息

Recept Channels. 1995;3(3):175-83.

PMID:8821791
Abstract

We have cloned a novel human brain inward rectifier K+ channel (hIRK1), which shares approximately 60% amino acid identity with another human inward rectifier (hIRK2) but 98% identity with the mouse IRK1. The hIRK1 mRNA is expressed in several human tissues: skeletal muscle > placenta > heart > brain > lung > kidney. In human brain, the hIRK1 mRNA is uniformly distributed (except for a higher level in the corpus callosum, which contains white matter and glial cells), whereas the hIRK2 mRNA is expressed in major regions of the basal ganglia and limbic system. Xenopus oocytes injected with hIRK1 cRNA expressed an inwardly rectifying K+ current that was blocked by extracellular Ba2+. The hIRK1 channel carried a significant outward current when membrane potential was more positive than the K+ equilibrium potential (EK) and therefore had an "N-shape" current-voltage relation, resembling that of the native cardiac IRK channel. The resting membrane potential was near EK in oocytes expressing hIRK1, but was approximately -40 mV in H2O-injected or non-injected oocytes. The ability of hIRK1 to set the resting membrane potential depended on the outward current. Single-channel conductance of hIRK1 was 32 pS measured with 150 mM KCl in the patch pipette, significantly higher than 23 pS measured for mouse IRK1 and approximately 10 pS for hIRK2.

摘要

我们克隆了一种新型的人类脑内向整流钾通道(hIRK1),它与另一种人类内向整流器(hIRK2)的氨基酸序列相似度约为60%,但与小鼠IRK1的相似度为98%。hIRK1 mRNA在几种人类组织中表达:骨骼肌>胎盘>心脏>脑>肺>肾。在人类大脑中,hIRK1 mRNA均匀分布(胼胝体中水平较高除外,胼胝体包含白质和神经胶质细胞),而hIRK2 mRNA在基底神经节和边缘系统的主要区域表达。注射hIRK1 cRNA的非洲爪蟾卵母细胞表达了一种内向整流钾电流,该电流被细胞外Ba2+阻断。当膜电位比钾平衡电位(EK)更正时,hIRK1通道携带显著的外向电流,因此具有“N形”电流-电压关系,类似于天然心脏IRK通道。在表达hIRK1的卵母细胞中,静息膜电位接近EK,但在注射水或未注射的卵母细胞中约为-40 mV。hIRK1设定静息膜电位的能力取决于外向电流。用膜片钳吸管中150 mM KCl测量时,hIRK1的单通道电导为32 pS,显著高于小鼠IRK1测量的23 pS和hIRK2测量的约10 pS。

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