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An internal regulatory element controls troponin I gene expression.

机译:内部调节元件控制肌钙蛋白I基因表达。

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摘要

During skeletal myogenesis, approximately 20 contractile proteins and related gene products temporally accumulate as the cells fuse to form multinucleated muscle fibers. In most instances, the contractile protein genes are regulated transcriptionally, which suggests that a common molecular mechanism may coordinate the expression of this diverse and evolutionarily unrelated gene set. Recent studies have examined the muscle-specific cis-acting elements associated with numerous contractile protein genes. All of the identified regulatory elements are positioned in the 5'-flanking regions, usually within 1,500 base pairs of the transcription start site. Surprisingly, a DNA consensus sequence that is common to each contractile protein gene has not been identified. In contrast to the results of these earlier studies, we have found that the 5'-flanking region of the quail troponin I (TnI) gene is not sufficient to permit the normal myofiber transcriptional activation of the gene. Instead, the TnI gene utilizes a unique internal regulatory element that is responsible for the correct myofiber-specific expression pattern associated with the TnI gene. This is the first example in which a contractile protein gene has been shown to rely primarily on an internal regulatory element to elicit transcriptional activation during myogenesis. The diversity of regulatory elements associated with the contractile protein genes suggests that the temporal expression of the genes may involve individual cis-trans regulatory components specific for each gene.
机译:在骨骼肌形成过程中,随着细胞融合形成多核肌纤维,约有20种收缩蛋白和相关基因产物暂时积累。在大多数情况下,收缩蛋白基因在转录上受到调控,这表明共同的分子机制可以协调这种多样化且在进化上不相关的基因集的表达。最近的研究已经检查了与许多收缩蛋白基因相关的肌肉特异性顺式作用元件。所有已鉴定的调控元件都位于5'侧翼区域,通常位于转录起始位点的1,500个碱基对之内。令人惊讶的是,尚未鉴定出每个收缩蛋白基因共有的DNA共有序列。与这些早期研究的结果相反,我们发现鹌鹑肌钙蛋白I(TnI)基因的5'侧翼区域不足以允许该基因的正常肌纤维转录激活。取而代之的是,TnI基因利用独特的内部调节元件,该元件负责与TnI基因相关的正确的肌纤维特异性表达模式。这是第一个例子,其中已经显示了收缩蛋白基因主要依赖内部调节元件在成肌过程中引起转录激活。与收缩蛋白基因相关的调控元件的多样性表明,基因的时间表达可能涉及每个基因特有的单个顺反调控元件。

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