首页> 外文期刊>Nucleic Acids Research >Identification and characterization of alternative promoters of zebrafish Rtn-4/Nogo genes in cultured cells and zebrafish embryos.
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Identification and characterization of alternative promoters of zebrafish Rtn-4/Nogo genes in cultured cells and zebrafish embryos.

机译:鉴定和表征培养细胞和斑马鱼胚胎中的斑马鱼Rtn-4 / Nogo基因的替代启动子。

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摘要

In mammals, the Nogo family consists of Nogo-A, Nogo-B and Nogo-C. However, there are three Rtn-4/Nogo-related transcripts were identified in zebrafish. In addition to the common C-terminal region, the N-terminal regions of Rtn4-n/Nogo-C1, Rtn4-m/Nogo-C2 and Rtn4-l/Nogo-B, respectively, contain 9, 25 and 132 amino acid residues. In this study, we isolated the 5'-upstream region of each gene from a BAC clone and demonstrated that the putative promoter regions, P1-P3, are functional in cultured cells and zebrafish embryos. A transgenic zebrafish Tg(Nogo-B:GFP) line was generated using P1 promoter region to drive green fluorescent protein (GFP) expression through Tol2-mediated transgenesis. This line recapitulates the endogenous expression pattern of Rtn4-l/Nogo-B mRNA in the brain, brachial arches, eyes, muscle, liver and intestines. In contrast, GFP expressions by P2 and P3 promoters were localized to skeletal muscles of zebrafish embryos. Several GATA and E-box motifs are found in these promoter regions. Using morpholino knockdown experiments, GATA4 and GATA6 were involved in the control of P1 promoter activity in the liver and intestine, while Myf5 and MyoD for the control of P1 and P3 promoter activities in muscles. These data demonstrate that zebrafish Rtn4/Nogo transcripts might be generated by coupling mechanisms of alternative first exons and alternative promoter usage.
机译:在哺乳动物中,Nogo家族由Nogo-A,Nogo-B和Nogo-C组成。但是,在斑马鱼中发现了三个与Rtn-4 / Nogo相关的转录本。除了共同的C端区域外,Rtn4-n / Nogo-C1,Rtn4-m / Nogo-C2和Rtn4-1 / Nogo-B的N端区域分别包含9、25和132个氨基酸残留物。在这项研究中,我们从BAC克隆中分离出每个基因的5'上游区域,并证明推定的启动子区域P1-P3在培养的细胞和斑马鱼胚胎中起作用。转基因的斑马鱼Tg(Nogo-B:GFP)系使用P1启动子区域生成,以通过Tol2介导的转基因驱动绿色荧光蛋白(GFP)表达。这条线概括了Rtn4-1 / Nogo-B mRNA在脑,臂弓,眼睛,肌肉,肝脏和肠道中的内源表达模式。相比之下,P2和P3启动子的GFP表达位于斑马鱼胚胎的骨骼肌中。在这些启动子区域中发现了几个GATA和E-box基序。使用吗啉代敲除实验,GATA4和GATA6参与了肝脏和肠道中P1启动子活性的控制,而Myf5和MyoD则参与了肌肉中P1和P3启动子活性的控制。这些数据表明,斑马鱼Rtn4 / Nogo转录本可能是通过替代性的第一个外显子和替代性的启动子使用机制而产生的。

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