首页> 美国卫生研究院文献>Molecular and Cellular Biology >cis-acting sequences of the rat troponin I slow gene confer tissue- and development-specific transcription in cultured muscle cells as well as fiber type specificity in transgenic mice.
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cis-acting sequences of the rat troponin I slow gene confer tissue- and development-specific transcription in cultured muscle cells as well as fiber type specificity in transgenic mice.

机译:大鼠肌钙蛋白I慢基因的顺式作用序列赋予培养的肌肉细胞组织和发育特异性转录以及转基因小鼠的纤维类型特异性。

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摘要

Transcription of the genes coding for troponin I slow (TnIslow) and other contractile proteins is activated during skeletal muscle differentiation, and their expression is later restricted to specific fiber types during maturation. We have isolated and characterized the rat TnIslow gene in order to begin elucidating its regulation during myogenesis. Transcriptional regulatory regions were delineated by using constructs, containing TnIslow gene sequences driving the expression of the chloramphenicol acetyltransferase (CAT) reporter gene, that were transiently transfected into undifferentiated and differentiated C2C12 cells. TnIslow 5'-flanking sequences directed transcription specifically in differentiated cells. However, transcription rates were approximately 10-fold higher in myotubes transfected with constructs containing the 5'-flanking sequences plus the intragenic region residing upstream of the translation initiation site (introns 1 and 2), indicative of interactions between elements residing upstream and in the introns of the gene. Deletion analysis of the 5' region of the TnIslow gene showed that the 200 bp upstream of the transcription initiation site is sufficient to confer differentiation-specific transcription in C2C12 myocytes. MyoD consensus binding sites were found both in the upstream 200-bp region and in a region residing in the second intron that is highly homologous to the quail TnIfast enhancer. Transactivation experiments using transfected NIH 3T3 fibroblasts with TnI-CAT constructs containing intragenic and/or upstream sequences and with the myogenic factors MyoD, myogenin, and MRF4 showed different potentials of these factors to induce transcription. Transgenic mice harboring the rat TnI-CAT fusion gene expressed the reporter specifically in the skeletal muscle. Furthermore, CAT levels were approximately 50-fold higher in the soleus than in the extensor digitorum longus, gastrocnemius, or tibialis muscle, indicating that the regulatory elements that restrict TnI transcription to slow-twitch myofibers reside in the sequences we have analyzed.
机译:骨骼肌分化过程中激活了编码肌钙蛋白I慢(TnIslow)和其他收缩蛋白的基因的转录,后来它们的表达在成熟过程中局限于特定的纤维类型。我们已经分离并鉴定了大鼠TnIslow基因,以便开始阐明其在肌发生过程中的调控。通过使用含有驱动氯霉素乙酰基转移酶(CAT)报告基因表达的TnIslow基因序列的构建体来描绘转录调控区域,该构建体被瞬时转染到未分化和分化的C2C12细胞中。 TnIslow 5'侧翼序列在分化细胞中特异性指导转录。然而,在转染了含有5'侧翼序列和位于翻译起始位点上游的基因内区域(内含子1和2)的构建体的肌管中,转录速率大约高10倍,这表明位于上游和内部的元件之间存在相互作用。基因的内含子。 TnIslow基因的5'区域的缺失分析表明,转录起始位点上游200 bp足以在C2C12心肌细胞中赋予分化特异性转录。 MyoD共有结合位点位于上游200 bp区域和第二个内含子中,与鹌鹑TnIfast增强子高度同源。使用转染的NIH 3T3成纤维细胞与含有基因内和/或上游序列的TnI-CAT构建体以及肌源性因子MyoD,肌生成素和MRF4进行的转激活实验显示,这些因子诱导转录的潜力不同。携带大鼠TnI-CAT融合基因的转基因小鼠在骨骼肌中特异性表达了报告基因。而且,比目鱼肌中的CAT水平比趾长肌,腓肠肌或胫骨肌高约50倍,这表明将TnI转录限制为慢肌纤维的调节因子存在于我们分析的序列中。

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