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在ras转化的成纤维细胞中存在一种Ca2(+)激活的K+电流,而在未转化的细胞中则不存在。

A Ca2(+)-activated K+ current in ras-transformed fibroblasts is absent from nontransformed cells.

作者信息

Rane S G

机构信息

Department of Biological Sciences, Purdue University, West Lafayette, Indiana 47907.

出版信息

Am J Physiol. 1991 Jan;260(1 Pt 1):C104-12. doi: 10.1152/ajpcell.1991.260.1.C104.

Abstract

Biochemical similarities between ras proteins and the GTP-binding proteins and correlation of ras-induced cell transformation with altered transmembrane cation fluxes indicate that ras proteins may act to modulate ion channel activity. To test this idea, whole cell, tight-seal, patch-clamp recording was used to compare macroscopic currents of ras-transformed fibroblasts with currents of their nontransformed counterparts. A prominent calcium-activated, voltage-independent potassium current was observed in 83-100% of cells from three separate fibroblast lines transformed by two different oncogenic ras alleles, whereas the same current was present at much smaller amplitudes in only 0-15% of nontransformed cells. The calcium-activated potassium current is blocked by charybdotoxin and by concentrations of tetraethylammonium above 1 mM, but it is insensitive to apamin. Both normal and ras-transformed cells have another calcium-activated current that is not potassium selective, and, consistent with other studies, normal cells display a voltage-activated calcium conductance. These results suggest that the mechanisms by which ras triggers or maintains cell transformation may involve alterations in the number or activity of certain ion channels, in particular, a type of calcium-activated potassium channel.

摘要

Ras蛋白与GTP结合蛋白之间的生化相似性,以及Ras诱导的细胞转化与跨膜阳离子通量改变之间的相关性表明,Ras蛋白可能起到调节离子通道活性的作用。为了验证这一想法,采用全细胞、紧密封接式膜片钳记录技术,比较了Ras转化的成纤维细胞与其未转化对应细胞的宏观电流。在由两种不同致癌性Ras等位基因转化的三个独立成纤维细胞系中,83% - 100%的细胞观察到一种显著的钙激活、电压不依赖的钾电流,而在未转化细胞中,只有0% - 15%的细胞存在相同电流,但幅度要小得多。钙激活钾电流可被蝎毒素和高于1 mM的四乙铵浓度阻断,但对蜂毒明肽不敏感。正常细胞和Ras转化细胞都有另一种非钾选择性的钙激活电流,并且与其他研究一致,正常细胞表现出电压激活的钙电导。这些结果表明,Ras触发或维持细胞转化的机制可能涉及某些离子通道数量或活性的改变,特别是一种钙激活钾通道。

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