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通过在肌球蛋白轻链2(mylz2)启动子下转基因表达绿色荧光蛋白(GFP)来重现斑马鱼快速骨骼肌发育过程。

Recapitulation of fast skeletal muscle development in zebrafish by transgenic expression of GFP under the mylz2 promoter.

作者信息

Ju Bensheng, Chong Shang Wei, He Jiangyan, Wang Xukun, Xu Yanfei, Wan Haiyan, Tong Yan, Yan Tie, Korzh Vladimir, Gong Zhiyuan

机构信息

Department of Biological Sciences, National University of Singapore, Singapore.

出版信息

Dev Dyn. 2003 May;227(1):14-26. doi: 10.1002/dvdy.10273.

Abstract

A 1,934-bp muscle-specific promoter from the zebrafish mylz2 gene was isolated and characterized by transgenic analysis. By using a series of 5' promoter deletions linked to the green fluorescent protein (gfp) reporter gene, transient transgenic analysis indicated that the strength of promoter activity appeared to correlate to the number of muscle cis-elements in the promoter and that a minimal -77-bp region was sufficient for a relatively strong promoter activity in muscle cells. Stable transgenic lines were obtained from several mylz2-gfp constructs. GFP expression in the 1,934-bp promoter transgenic lines mimicked well the expression pattern of endogenous mylz2 mRNA in both somitic muscle and nonsomitic muscles, including fin, eye, jaw, and gill muscles. An identical pattern of GFP expression, although at a much lower level, was observed from a transgenic line with a shorter 871-bp promoter. Our observation indicates that there is no distinct cis-element for activation of mylz2 in different skeletal muscles. Furthermore, RNA encoding a dominant negative form of cAMP-dependent protein kinase A was injected into mylz2-gfp transgenic embryos and GFP expression was significantly reduced due to an expanded slow muscle development at the expense of GFP-expressing fast muscle. The mylz2-gfp transgene was also transferred into two zebrafish mutants, spadetail and chordino, and several novel phenotypes in muscle development in these mutants were discovered.

摘要

从斑马鱼mylz2基因中分离出一个1934bp的肌肉特异性启动子,并通过转基因分析对其进行了表征。通过使用一系列与绿色荧光蛋白(gfp)报告基因相连的5'启动子缺失片段,瞬时转基因分析表明,启动子活性的强度似乎与启动子中肌肉顺式元件的数量相关,并且一个最小的-77bp区域足以在肌肉细胞中产生相对较强的启动子活性。从几个mylz2-gfp构建体中获得了稳定的转基因系。1934bp启动子转基因系中的GFP表达很好地模拟了内源性mylz2 mRNA在体节肌和非体节肌(包括鳍、眼、颌和鳃肌)中的表达模式。从具有较短的871bp启动子的转基因系中观察到相同的GFP表达模式,尽管水平要低得多。我们的观察表明,在不同的骨骼肌中没有明显的顺式元件用于激活mylz2。此外,将编码cAMP依赖性蛋白激酶A显性负性形式的RNA注射到mylz2-gfp转基因胚胎中,由于慢肌发育扩大以牺牲表达GFP的快肌为代价,GFP表达显著降低。mylz2-gfp转基因也被转移到两个斑马鱼突变体spadetail和chordino中,并在这些突变体的肌肉发育中发现了几种新的表型。

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