Xu Y, He J, Tian H L, Chan C H, Liao J, Yan T, Lam T J, Gong Z
Department of Biological Sciences, National University of Singapore, Singapore.
DNA Cell Biol. 1999 Jan;18(1):85-95. doi: 10.1089/104454999315655.
A zebrafish myosin light chain 2 cDNA clone was isolated and characterized. Sequence analysis of the clone revealed a high homology with the mammalian and avian genes encoding the fast skeletal muscle isoform, MLC2f. In situ hybridization and Northern blot hybridization analyses indicated that the zebrafish MLC2f mRNA is expressed exclusively in the fast skeletal muscle. Ontogenetically, the MLC2f mRNA appears around 16 hours postfertilization (hpf) in the first few well-formed anterior somites. At later stages, the MLC2f mRNA can also be detected in fin buds, eye muscles, and jaw muscles. To develop a useful model system for analyzing muscle gene regulation, the promoter of the zebrafish MLC2f gene was isolated and linked to the chloramphenicol acetyltransferase (CAT) reporter gene. The MLC2f/CAT chimeric constructs were analyzed by direct injection into the zebrafish skeletal muscle, and significant CAT activity was observed; in contrast, little or no CAT activity was generated from a similarly injected prolactin gene promoter/CAT gene construct. Within the 1 kb of the MLC2f promoter region, several MEF2-binding sites and E-boxes were identified, suggesting that MLC2f can be regulated by muscle transcription factors MEF2 and myogenic bHLH proteins. A 5' deletion analysis indicated that the proximal 79 nucleotides from the transcription start site, which contains a single MEF2-binding site, is sufficient to drive a high level of CAT activity in injected muscle. Internal deletion of the MEF2 element in the -79-bp construct caused an 80% decrease in CAT activity, whereas internal deletion of the same MEF2 element in a -1044-bp construct had no effect on induced CAT activity. These observations suggest that an MEF2 element is important to activate the MLC2f gene in muscle cells, and the effect of loss of the proximal MEF2 element can be compensated for by the presence of the upstream MEF2 elements. This study also demonstrated that direct injection of DNA into skeletal muscle is a valid and valuable approach to analyze muscle gene promoters in the zebrafish.
分离并鉴定了一个斑马鱼肌球蛋白轻链2 cDNA克隆。对该克隆的序列分析显示,它与编码快速骨骼肌亚型MLC2f的哺乳动物和鸟类基因具有高度同源性。原位杂交和Northern印迹杂交分析表明,斑马鱼MLC2f mRNA仅在快速骨骼肌中表达。在个体发育过程中,MLC2f mRNA在受精后约16小时(hpf)出现在最初几个发育良好的前体节中。在后期阶段,在鳍芽、眼肌和颌肌中也能检测到MLC2f mRNA。为了开发一个用于分析肌肉基因调控的有用模型系统,分离了斑马鱼MLC2f基因的启动子,并将其与氯霉素乙酰转移酶(CAT)报告基因相连。通过直接注射到斑马鱼骨骼肌中分析MLC2f/CAT嵌合构建体,观察到显著的CAT活性;相比之下,类似注射的催乳素基因启动子/CAT基因构建体几乎没有产生CAT活性。在MLC2f启动子区域的1 kb范围内,鉴定出了几个MEF2结合位点和E框,这表明MLC2f可以受到肌肉转录因子MEF2和成肌bHLH蛋白的调控。5'缺失分析表明,转录起始位点近端的79个核苷酸,其中包含一个单一的MEF2结合位点,足以在注射的肌肉中驱动高水平的CAT活性。-79-bp构建体中MEF2元件的内部缺失导致CAT活性降低80%,而-1044-bp构建体中相同MEF2元件的内部缺失对诱导的CAT活性没有影响。这些观察结果表明,一个MEF2元件对于在肌肉细胞中激活MLC2f基因很重要,近端MEF2元件缺失的影响可以通过上游MEF2元件的存在得到补偿。这项研究还表明,将DNA直接注射到骨骼肌中是分析斑马鱼肌肉基因启动子的一种有效且有价值的方法。