首页> 外文期刊>In Vitro Cellular and Developmental Biology. Animal: Journal of the Tissues Culture Association >Identifying connexin expression and determining gap junction intercellular communication in rainbow trout cells
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Identifying connexin expression and determining gap junction intercellular communication in rainbow trout cells

机译:识别Connexin表达和确定虹鳟鱼细胞间隙结肠间通信

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摘要

Gap junctions are groups of membrane-bound channels that allow the passage of small molecules and ions between cells, permitting cell-cell communication. Because of their importance in cell homeostasis, gap junction presence and function were characterized in three commonly studied rainbow trout cell lines, namely RTgill-W1, RTgutGC, and RTG-2. Firstly, gap junction presence was determined by screening for gap junction protein alpha 7 and alpha 1 (GJA7 and GJA1) presence at the transcript level and GJA7 at the protein level. GJA7 was successfully identified at both the transcript and protein levels, and GJA1 was detected at the transcript level in all three cell lines. This is the first report of a GJA7 full-length transcript sequence in rainbow trout cells. Gap junction function, as determined by gap junction intercellular communication (GJIC), was examined using Lucifer yellow dye migration with the scrape and load technique; visualized by fluorescence microscopy. Phorbol 12-myristate 13-acetate (PMA), a gap junction inhibitor, was used to confirm the presence of functional gap junctions. Effects of serum deprivation on GJIC were also monitored; 24-h serum deprivation resulted in greater dye migration compared with 30-min serum deprivation. Both RTG-2 and RTgill-W1 showed significant dye migration that was inhibited by PMA while RTgutGC did not. Human foreskin fibroblast (HFF-1) cells were used as a positive control for gap junction presence and function. Taken together, our study shows that rainbow trout cells express connexin transcripts and proteins, and RTG-2 and, to a lesser extent, RTgill-W1 cells are able to perform GJIC.
机译:间隙结是膜结合通道的组,允许细胞之间的小分子和离子的通过,允许细胞 - 细胞通信。由于它们在细胞稳态中的重要性,间隙结的存在和功能的特征在于三个常见的彩虹鳟鱼细胞系,即RTGILL-W1,RTGUTGC和RTG-2。首先,通过在蛋白质水平的转录水平和GJA7处筛选间隙结蛋白α7和α1(GJA7和GJA1)存在来确定间隙结存在。 GJA7在转录物和蛋白质水平上成功鉴定,并且在所有三种细胞系中的转录物水平检测GJA1。这是彩虹鳟鱼细胞中GJA7全长转录序列的第一个报告。采用Gap结细胞间通信(GJIC)确定的间隙结函数使用荧光素黄色染料迁移与刮刮和负载技术来检查;通过荧光显微镜观察。 Phorbol 12-肉豆蔻酸酯13-醋酸酯(PMA),间隙结抑制剂,用于确认功能间隙连接的存在。还监测血清剥夺对GJIC的影响;与30分钟的血清剥夺相比,24-H血清剥夺导致更大的染料迁移。 RTG-2和RTGILL-W1都显示出PMA抑制的显着染料迁移,而RTGUTGC没有。人包皮成纤维细胞(HFF-1)细胞用作间隙结存在和功能的阳性对照。我们的研究表明,彩虹鳟鱼细胞表达Connexin转录物和蛋白质,rTG-2,以及较小程度,RTGILL-W1细胞能够进行GJIC。

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