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Activity of the medaka translation elongation factor 1#alpha#-A promoter examined using the GFP gene as a reporter

机译:使用GFP基因作为报告基因检测的medaka翻译延伸因子1#alpha#-A启动子的活性

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摘要

The translation elongation factor 1#alpha# (EF-1#alpha#) is known to have several isoforms, which are expressed in a tissueand stage-specific manner. Two genes encoding EF-1#alpha# exist per haploid genome in the medaka. In the present study, the promoter activity of the 5'-flanking region of the medaka EF-1#alpha#-A gene, an isoform of EF-1#alpha#, was characterized using transgenic techniques. First, using CAT gene as a reporter, it was revealed that about 1.8 kbp 5'-flanking sequence from the transcription initiation site of EF-1#alpha#-A was sufficient for high-level promoter activity. Second, the green fluorescent protein (GFP) gene fused to this region was introduced into medaka eggs using the microinjection method. Three germline transgenicindividuals (one male and two female) were mated with non-transgenic medaka to obtain F1 offspring. In the case of embryonic and adult F1 transgenic individuals, GFP fluorescence was observed in almost all the tissues examined (e.g. kidney, liver, heart, gill, ovary, and testis), except for the skeletal muscle. In the case of F2 transgenic embryos derived from F1 transgenic males and non-transgenic females, the fluorescence was observed from the early gastrula stage. On the other hand, in the case of F2 transgenic embryos derived from F1 transgenic females and non-transgenic males, the fluorescence was oberved even at the 1-cell stage, suggesting that this region is transcriptionally active during oogenesis. The usefulness of the EF-1#alpha#-A promoter as a tool for introducing foreign proteins into oocytes is discussed.
机译:已知翻译延伸因子1#alpha#(EF-1#alpha#)具有几种同种型,它们以组织和阶段特异性方式表达。在中每个单倍体基因组中存在两个编码EF-1#alpha#的基因。在本研究中,使用转基因技术表征了medaka EF-1#alpha#-A基因(EF-1#alpha#的同工型)的5'侧翼区域的启动子活性。首先,使用CAT基因作为报告基因,发现从EF-1#α#-A的转录起始位点开始的约1.8kbp 5'侧翼序列对于高水平的启动子活性是足够的。其次,使用显微注射方法将融合到该区域的绿色荧光蛋白(GFP)基因引入高卵中。将三只种系转基因个体(一男两女)与非转基因高交配以获得F1后代。对于胚胎和成年F1转基因个体,除骨骼肌外,几乎在所有检查的组织(例如肾脏,肝脏,心脏,腮,卵巢和睾丸)中均观察到GFP荧光。在衍生自F1转基因雄性和非转基因雌性的F2转基因胚胎的情况下,从早期胃开始观察到荧光。另一方面,在衍生自F1转基因雌性和非转基因雄性的F2转基因胚胎的情况下,即使在1细胞期也观察到了荧光,表明该区域在卵子发生过程中具有转录活性。 EF-1#alpha#-A启动子作为将外源蛋白引入卵母细胞的工具的有用性进行了讨论。

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