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首页> 外文期刊>Development >Dimerization partners determine the activity of the Twist bHLH protein during Drosophila mesoderm development.
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Dimerization partners determine the activity of the Twist bHLH protein during Drosophila mesoderm development.

机译:二聚体伴侣决定了果蝇中胚层发育过程中Twist bHLH蛋白的活性。

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The basic helix-loop-helix transcription factor Twist regulates a series of distinct cell fate decisions within the Drosophila mesodermal lineage. These twist functions are reflected in its dynamic pattern of expression, which is characterized by initial uniform expression during mesoderm induction, followed by modulated expression at high and low levels in each mesodermal segment, and finally restricted expression in adult muscle progenitors. We show two distinct partner-dependent functions for Twist that are crucial for cell fate choice. We find that Twist can form homodimers and heterodimers with the Drosophila E protein homologue, Daughterless, in vitro. Using tethered dimers to assess directly the function of these two particular dimers in vivo, we show that Twist homodimers specify mesoderm and the subsequent allocation of mesodermal cells to the somatic muscle fate. Misexpression of Twist-tethered homodimers in the ectoderm or mesoderm leads to ectopic somatic muscle formation overriding other developmental cell fates. In addition, expression of tethered Twist homodimers in embryos null for twist can rescue mesoderm induction as well as somatic muscle development. Loss of function analyses, misexpression and dosage experiments, and biochemical studies indicate that heterodimers of Twist and Daughterless repress genes required for somatic myogenesis. We propose that these two opposing roles explain how modulated Twist levels promote the allocation of cells to the somatic muscle fate during the subdivision of the mesoderm. Moreover, this work provides a paradigm for understanding how the same protein controls a sequence of events within a single lineage.
机译:基本的螺旋-环-螺旋转录因子Twist调节果蝇中胚层谱系中的一系列不同的细胞命运决定。这些扭曲功能反映在其动态表达模式中,其特征在于中胚层诱导期间最初的均匀表达,然后在每个中胚层节段中以高和低水平调节表达,最后在成年肌肉祖细胞中表达受到限制。我们展示了Twist的两个不同的依赖于伙伴的功能,这些功能对于细胞命运的选择至关重要。我们发现Twist可以与果蝇E蛋白同源物,无子级,在体外形成同二聚体和异二聚体。使用拴系二聚体直接评估体内这两个特定二聚体的功能,我们表明Twist同二聚体可指定中胚层以及随后的中胚层细胞分配给体细胞的命运。外胚层或中胚层中扭曲拴系的同型二聚体的错误表达会导致异位体细胞形成,从而超越其他发育细胞命运。此外,在扭曲无效的胚胎中表达的扭曲Twist同二聚体可以挽救中胚层的诱导以及体细胞的发育。功能丧失分析,错误表达和剂量实验以及生化研究表明,Twist和Daughterless的异二聚体会抑制体细胞肌发生所需的基因。我们建议这两个相反的作用解释了调节的扭曲水平如何在中胚层细分期间促进细胞向体肌命运的分配。此外,这项工作为理解相同蛋白质如何控制单个谱系中的事件序列提供了范例。

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