首页> 外文OA文献 >The basic domain of myogenic basic helix-loop-helix (bHLH) proteins is the novel target for direct inhibition by another bHLH protein, Twist.
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The basic domain of myogenic basic helix-loop-helix (bHLH) proteins is the novel target for direct inhibition by another bHLH protein, Twist.

机译:肌原性基本螺旋-环-螺旋(bHLH)蛋白的基本结构域是另一种bHLH蛋白Twist直接抑制的新靶标。

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摘要

In vertebrates, the basic helix-loop-helix (bHLH) protein Twist may be involved in the negative regulation of cellular determination and in the differentiation of several lineages, including myogenesis, osteogenesis, and neurogenesis. Although it has been shown that mouse twist (M-Twist) (i) sequesters E proteins, thus preventing formation of myogenic E protein-MyoD complexes and (ii) inhibits the MEF2 transcription factor, a cofactor of myogenic bHLH proteins, overexpression of E proteins and MEF2 failed to rescue the inhibitory effects of M-Twist on MyoD. We report here that M-Twist physically interacts with the myogenic bHLH proteins in vitro and in vivo and that this interaction is required for the inhibition of MyoD by M-Twist. In contrast to the conventional HLH-HLH domain interaction formed in the MyoD/E12 heterodimer, this novel type of interaction uses the basic domains of the two proteins. While the MyoD HLH domain without the basic domain failed to interact with M-Twist, a MyoD peptide containing only the basic and helix 1 regions was sufficient to interact with M-Twist, suggesting that the basic domain contacts M-Twist. The replacement of three arginine residues by alanines in the M-Twist basic domain was sufficient to abolish both the binding and inhibition of MyoD by M-Twist, while the domain retained other M-Twist functions such as heterodimerization with an E protein and inhibition of MEF2 transactivation. These findings demonstrate that M-Twist interacts with MyoD through the basic domains, thereby inhibiting MyoD.
机译:在脊椎动物中,基本的螺旋-环-螺旋(bHLH)蛋白Twist可能参与细胞测定的负调控以及包括肌发生,成骨和神经发生在内的几种谱系的分化。尽管已经显示出小鼠扭曲(M-Twist)(i)隔离E蛋白,从而阻止了肌原性E蛋白-MyoD复合物的形成,并且(ii)抑制了肌原性bHLH蛋白的辅因子MEF2转录因子,E的过表达蛋白和MEF2无法挽救M-Twist对MyoD的抑制作用。我们在这里报告说,M-Twist在体外和体内与肌原性bHLH蛋白发生物理相互作用,并且这种相互作用是M-Twist抑制MyoD所必需的。与在MyoD / E12异二聚体中形成的常规HLH-HLH结构域相互作用相反,这种新型的相互作用使用了两种蛋白质的基本结构域。尽管没有基本结构域的MyoD HLH结构域无法与M-Twist相互作用,但仅包含基本结构域和螺旋1区的MyoD肽足以与M-Twist相互作用,这表明基本结构域与M-Twist接触。 M-Twist碱性结构域中的丙氨酸取代了三个精氨酸残基,足以消除M-Twist对MyoD的结合和抑制,而该结构域保留了其他M-Twist功能,例如与E蛋白的异二聚化和对M-Twist的抑制。 MEF2反式激活。这些发现表明,M-Twist通过基本结构域与MyoD相互作用,从而抑制了MyoD。

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