首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Expression of gap junction channels in communication-incompetent cells after stable transfection with cDNA encoding connexin 32.
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Expression of gap junction channels in communication-incompetent cells after stable transfection with cDNA encoding connexin 32.

机译:用编码连接蛋白32的cDNA稳定转染后无通讯能力的细胞中间隙连接通道的表达。

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摘要

The gene family encoding gap junction proteins (connexins) consists of several known members, and multiple connexins are frequently coexpressed by coupled cells. To characterize the channel properties of the major rat liver gap junction protein (connexin 32) in isolation from other gap junction proteins, we have introduced the cDNA encoding it into a human hepatoma cell line (SKHep1) in which we have identified a gap junction deficiency. In this cell line, dye coupling was absent and junctional conductance was near zero. Connexins and connexin 32 mRNA were not detectable by immunocytochemistry and Northern blot analysis. After transfection and selection, cells were strongly coupled with regard to dye and electrical current, and connexin 32 mRNA and punctate connexin 32-immunoreactive membrane contacts were abundant. Functional gap junction channels were still expressed after 19 passages of the cells, indicating stable transfection. When junctional conductance was rendered reversibly low by exposing the cells to agents that uncouple other cell types, currents through single gap junction channels could be observed. The unitary conductance of these expressed channels was about 120-150 pS, a value that is distinctly larger than in heart cells, which express a different gap junction protein.
机译:编码间隙连接蛋白(连接蛋白)的基因家族由几个已知成员组成,多种连接蛋白通常由偶联细胞共表达。为了表征与其他间隙连接蛋白分离的主要大鼠肝脏间隙连接蛋白(连接蛋白32)的通道特性,我们将编码该蛋白的cDNA引入了人类肝癌细胞系(SKHep1),在其中我们发现了间隙连接缺陷。在该细胞系中,不存在染料偶联,并且连接电导接近于零。连接蛋白和连接蛋白32 mRNA无法通过免疫细胞化学和Northern blot分析检测到。转染和选择后,细胞在染料和电流方面紧密结合,连接蛋白32 mRNA和点状连接蛋白32免疫反应性膜接触丰富。在细胞传代19次后,功能性间隙连接通道仍然表达,表明转染稳定。当通过将细胞暴露于解偶联其他细胞类型的试剂而使连接电导率可逆降低时,可以观察到流过单个间隙连接通道的电流。这些表达的通道的单位电导为约120-150 pS,该值明显大于表达不同间隙连接蛋白的心脏细胞中的值。

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