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通过基因转染在绿猴肾细胞系COS-1中表达的内向整流钾通道。

Inwardly rectifying potassium channels expressed by gene transfection into the green Monkey kidney cell line COS-1.

作者信息

Omori K, Oishi K, Matsuda H

机构信息

Department of Physiology, Kansai Medical University, Osaka, Japan.

出版信息

J Physiol. 1997 Mar 1;499 ( Pt 2)(Pt 2):369-78. doi: 10.1113/jphysiol.1997.sp021934.

Abstract
  1. cDNA encoding a functional inwardly rectifying K+ (IRK1) channel was transfected into COS-1 cells (a Green Monkey kidney cell line) using the liposome method, and voltage clamp experiments were done after 48-72 h. 2. Transfected cells showed inward rectification under whole-cell recording. The unitary current-voltage relationships in the inside-out configuration were almost linear in the absence of internal Mg2+ and polyamines, and the channel conductance averaged 34.1 +/- 2.0 pS (n = 15) at 23-26 degrees C. 3. Internal Mg2+ (2-10 microM) induced sublevels in the outward current with one-third and two-thirds of the unitary amplitude as in native channels. 4. To determine the subunit stoichiometry, we constructed tandem multimeric cDNAs consisting of the coding sequences of the IRK1 gene linked in a head-to-tail fashion. Cells transfected with tandem homomultimers up to octamers showed similar inwardly rectifying K+ channels. 5. A mutation (E138Q) eliminated the ionic conductance of the channel. Channels expressed by dimeric constructs containing a single mutant have a conductance ranging between 5 and 35 pS. 6. The E138Q mutant cotransfected with a wild-type dimeric, trimeric or tetrameric construct did not alter the channel conductance. The results do not support the notion that IRK1 channel proteins consist of four subunits.
摘要
  1. 采用脂质体法将编码功能性内向整流钾离子(IRK1)通道的互补DNA(cDNA)转染至COS - 1细胞(一种绿猴肾细胞系),48 - 72小时后进行电压钳实验。2. 在全细胞记录下,转染细胞呈现内向整流特性。在细胞内向外膜片钳模式下,当细胞内无镁离子和多胺时,单位电流 - 电压关系几乎呈线性,在23 - 26摄氏度时,通道电导平均为34.1±2.0皮西门子(n = 15)。3. 细胞内镁离子(2 - 10微摩尔)可诱导外向电流出现亚水平,其单位电流幅度的三分之一和三分之二与天然通道情况相同。4. 为确定亚基化学计量比,我们构建了由IRK1基因编码序列首尾相连的串联多聚体cDNA。转染了直至八聚体的串联同型多聚体的细胞表现出相似的内向整流钾离子通道。5. 一个突变(E138Q)消除了通道的离子电导。由含有单个突变体的二聚体构建体表达的通道电导在5至35皮西门子之间。6. 与野生型二聚体、三聚体或四聚体构建体共转染的E138Q突变体并未改变通道电导。这些结果不支持IRK1通道蛋白由四个亚基组成的观点。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8246/1159312/0c0f7c2ce05a/jphysiol00283-0087-a.jpg

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