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首页> 外文期刊>Mechanisms of Development >Determination of the minimal domains of Mix.3/Mixer required for endoderm development
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Determination of the minimal domains of Mix.3/Mixer required for endoderm development

机译:确定内胚层发育所需的Mix.3 / Mixer的最小区域

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摘要

The Mix/Bix family of Pax-like homeodomain transcription factors is expressed early in vertebrate development and play important roles in endoderm and mesoderm formation. Like other Pax-related homeodomain proteins, the Mix/Bix family binds DNA as monomers or dimers and dimerization is mediated by the homeodomain. While the Mix/Bix family shares extensive sequence homology within the DNA-binding homeodomain, ectopic expression of these proteins has profoundly different outcomes. Expression of Xenopus Mix.3/Mixer in explanted ectoderm results in endoderm differentiation, whereas Mix.1 expression does not. In this study we sought to define the domains of Mix.3/Mixer that are responsible for this endoderm inducing activity. We generated domain swap mutants between Mix.3/Mixer and Mix.1 and tested their ability to induce endoderm in explanted ectoderm. We demonstrate that the homeodomain and sixty-two amino acids in the carboxyl terminus are required to induce endoderm and that these domains must be on the same polypeptide and can not act in trans as a heterodimer. A Smad2 interaction motif in Mix.3/Mixer is involved in endoderm differentiation but is not essential. Thus, we have defined the regions of Mix.3/Mixer that confer endoderm-inducing activity. These studies reveal a novel co-operation between the homeodomain and a small domain in the carboxyl terminal region that is essential for Mix.3/Mixer function.
机译:Pax样同源域转录因子的Mix / Bix家族在脊椎动物发育的早期表达,并在内胚层和中胚层形成中起重要作用。像其他与Pax相关的同源域蛋白一样,Mix / Bix家族以单体或二聚体的形式结合DNA,二聚化由同源域介导。尽管Mix / Bix家族在结合DNA的同源域内具有广泛的序列同源性,但这些蛋白质的异位表达却有着截然不同的结果。 Xenopus Mix.3 / Mixer在外胚层中的表达会导致内胚层分化,而Mix.1的表达则不会。在这项研究中,我们试图定义负责这种内胚层诱导活性的Mix.3 / Mixer域。我们在Mix.3 / Mixer和Mix.1之间生成了域交换突变体,并测试了它们在外胚层中诱导内胚层的能力。我们证明了羧基末端的同源结构域和62个氨基酸是诱导内胚层所必需的,并且这些结构域必须在同一多肽上并且不能以反式的形式作为异二聚体。 Mix.3 / Mixer中的Smad2相互作用基序与内胚层分化有关,但不是必需的。因此,我们定义了赋予内胚层诱导活性的Mix.3 / Mixer区域。这些研究揭示了Homeodomain和羧基末端区域中一个小域之间的新颖合作,这对于Mix.3 / Mixer功能至关重要。

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