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首页> 外文期刊>Developmental biology >Muscle development in Ciona intestinalis requires the b-HLH myogenic regulatory factor gene Ci-MRF.
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Muscle development in Ciona intestinalis requires the b-HLH myogenic regulatory factor gene Ci-MRF.

机译:Ciona小肠的肌肉发育需要b-HLH生肌调节因子基因Ci-MRF。

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The activity of myogenic regulatory factor (MRF) genes is essential for vertebrate muscle development, whereas invertebrate muscle development is largely independent of MRF function. This difference indicates that myogenesis is controlled by distinct regulatory mechanisms in these two groups of animals. Here we used overexpression and gene knockdown to investigate the role in embryonic myogenesis of the single MRF gene of the invertebrate chordate Ciona intestinalis (Ci-MRF). Injection of Ci-MRF mRNA into eggs resulted in increased embryonic muscle-specific gene activity and revealed the myogenic activity of Ci-MRF by inducing the expression of four muscle marker genes, Acetylcholinesterase, Actin, Troponin I, and Myosin Light Chain in non-muscle lineages. Conversely, inhibiting Ci-MRF activity with antisense morpholinos down-regulated the expression of these genes. Consistent with the effects of morpholinos on muscle gene activity, larvae resulting from morpholino injection were paralyzed and their "muscle" cells lacked myofibrils. We conclude that Ci-MRF is required for larval tail muscle development and thus that an MRF-dependent myogenic regulatory network probably existed in the ancestor of tunicates and vertebrates. This possibility raises the question of whether the earliest myogenic regulatory networks were MRF-dependent or MRF-independent.
机译:肌源性调节因子(MRF)基因的活性对于脊椎动物的肌肉发育至关重要,而无脊椎动物的肌肉发育在很大程度上与MRF功能无关。这种差异表明在这两组动物中,肌发生受到不同调节机制的控制。在这里,我们使用过表达和基因敲低来研究无脊椎动物的碳酸盐Ciona intestinalis(Ci-MRF)的单个MRF基因在胚胎肌发生中的作用。将Ci-MRF mRNA注入卵中会导致胚胎肌肉特异性基因活性增加,并通过诱导四个肌肉标记基因(乙酰胆碱酯酶,肌动蛋白,肌钙蛋白I和肌球蛋白轻链)的表达来揭示Ci-MRF的成肌活性。肌肉谱系。相反,用反义吗啉代抑制Ci-MRF活性可下调这些基因的表达。与吗啉代对肌肉基因活性的影响一致,吗啉代注射产生的幼虫瘫痪,其“肌肉”细胞缺乏肌原纤维。我们得出结论,Ci-MRF是幼虫尾部肌肉发育所必需的,因此,被膜和脊椎动物的祖先中可能存在依赖MRF的成肌调控网络。这种可能性提出了一个问题,即最早的肌源性调节网络是MRF依赖性的还是MRF依赖性的。

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