首页> 外文期刊>Comparative biochemistry and physiology, Part B. Biochemistry & molecular biology >Generation of MuRF-GFP transgenic zebrafish models for investigating murf gene expression and protein localization in Smyd1b and Hsp90 alpha 1 knockdown embryos
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Generation of MuRF-GFP transgenic zebrafish models for investigating murf gene expression and protein localization in Smyd1b and Hsp90 alpha 1 knockdown embryos

机译:生成Murf-GFP转基因斑马鱼模型,用于研究SMYD1B和HSP90α1敲低胚胎中的Murf基因表达和蛋白质定位

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摘要

Muscle-specific RING-finger proteins (MuRFs) are E3 ubiquitin ligases that play important roles in protein quality control in skeletal and cardiac muscles. Here we characterized murf gene expression and protein localization in zebrafish embryos. We found that the zebrafish genome contains six murf genes, including MuRF1a, murflb, murf2a, murf2b, murf3 and a mutf2-like gene that are specifically expressed in skeletal and cardiac muscles of zebrafish embryos. To analyze the subcellular localization, we generated transgenic zebrafish models expressing MuRF1a-GFP or MuRF2a-GFP fusion proteins. MuRF1a-GFP and MuRF2a-GFP showed distinct patterns of subcellular localization. MuRF1a-GFP displayed a striated pattern of localization in myofibers, whereas MuRF2a-GFP mainly exhibited a random pattern of punctate distribution. The MuRF1a-GFP signal appeared as small dots aligned along the M-lines of the sarcomeres in skeletal myofibers. To determine whether knockdown of smyd1b or hsp90 alpha 1 that increased myosin protein degradation could alter murf gene expression or MuRF protein localization, we knocked down smyd1b or hsp90 alpha 1 in wild type, Tg(efla:MuRF1a-GFP) and Tg (ef a:MuRF2a-GFP) transgenic zebrafish embryos. Knockdown of smyd1b or hsp90 alpha 1 had no effect on murf gene expression. However, the sarcomeric distribution of MuRF1a-GFP was abolished in the knockdown embryos. This was accompanied by an increased random punctate distribution of MuRF1a-GFP in muscle cells of zebrafish embryos. Collectively, these studies demonstrate that MuRFs are specifically expressed in developing muscles of zebrafish embryos. The M-line localization MuRF1a is altered by sarcomere disruption in smyd1b or hsp90 alpha 1 knockdown embryos.
机译:特异性肌肉的戒指蛋白(MurF)是E3泛素连接酶,其在骨骼和心肌中的蛋白质质量控​​制中起重要作用。在这里,我们在斑马鱼胚胎中表征了Murf基因表达和蛋白质定位。我们发现斑马鱼基因组含有六个Murf基因,包括Murf1a,Murflb,murf2a,murf2b,murf3和mutf2样基因,该基因在斑马鱼胚胎的骨骼和心肌中特异性表达。为了分析亚细胞定位,我们产生了表达Murf1A-GFP或Murf2A-GFP融合蛋白的转基因斑马鱼模型。 Murf1A-GFP和Murf2A-GFP显示出明显的亚细胞定位模式。 Murf1A-GFP在Mydibers中显示出一种静脉的定位模式,而Murf2a-GFP主要表现出点缀分布的随机模式。 Murf1A-GFP信号显示为沿骨骼肌纤维的肉体组的M线对齐的小点。为了确定SMYD1B或HSP90α1的敲毁,增加肌蛋白蛋白质降解可以改变Murf基因表达或Murf蛋白质定位,我们在野生型,TG(EFLA:Murf1A-GFP)和TG(EF A. :Murf2A-GFP)转基因斑马鱼胚胎。 SMYD1B或HSP90α1的敲低对Murf基因表达没有影响。然而,在敲低胚胎中废除了Murf1A-GFP的SARCORORORIC分布。这伴随着在斑马鱼胚胎的肌肉细胞中的Murf1A-GFP的随机点状分布增加。总的来说,这些研究表明,Murfs在斑马鱼胚胎的肌肉中特别表达。 M-Line Localization Murf1a通过SMYD1B或HSP90α1敲低胚胎中的SARCARERER破坏改变。

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