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The MADS box transcription factor MEF2C regulates melanocyte development and is a direct transcriptional target and partner of SOX10

机译:MADS盒转录因子MEF2C调节黑素细胞的发育,是SOX10的直接转录靶标和伴侣

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摘要

Waardenburg syndromes are characterized by pigmentation and autosensory hearing defects, and mutations in genes encoding transcription factors that control neural crest specification and differentiation are often associated with Waardenburg and related disorders. For example, mutations in SOX10 result in a severe form of Waardenburg syndrome, Type IV, also known as Waardenburg-Hirschsprung disease, characterized by pigmentation and other neural crest defects, including defective innervation of the gut. SOX10 controls neural crest development through interactions with other transcription factors. The MADS box transcription factor MEF2C is an important regulator of brain, skeleton, lymphocyte and cardiovascular development and is required in the neural crest for craniofacial development. Here, we establish a novel role for MEF2C in melanocyte development. Inactivation of Mef2c in the neural crest of mice results in reduced expression of melanocyte genes during development and a significant loss of pigmentation at birth due to defective differentiation and reduced abundance of melanocytes. We identify a transcriptional enhancer of Mef2c that directs expression to the neural crest and its derivatives, including melanocytes, in transgenic mouse embryos. This novel Mef2c neural crest enhancer contains three functional SOX binding sites and a single essential MEF2 site. We demonstrate that Mef2c is a direct transcriptional target of SOX10 and MEF2 via this evolutionarily conserved enhancer. Furthermore, we show that SOX10 and MEF2C physically interact and function cooperatively to activate the Mef2c gene in a feed-forward transcriptional circuit, suggesting that MEF2C might serve as a potentiator of the transcriptional pathways affected in Waardenburg syndromes.
机译:Waardenburg综合征的特征是色素沉着和自觉性听觉缺陷,并且编码控制神经c规范和分化的转录因子的基因突变通常与Waardenburg及其相关疾病有关。例如,SOX10中的突变会导致严重形式的Waardenburg综合征IV型,也称为Waardenburg-Hirschsprung疾病,其特征在于色素沉着和其他神经c缺陷,包括肠道的神经支配缺陷。 SOX10通过与其他转录因子的相互作用来控制神经c的发育。 MADS盒转录因子MEF2C是脑,骨骼,淋巴细胞和心血管发育的重要调节剂,并且在颅顶神经面发育中是必需的。在这里,我们建立了MEF2C在黑素细胞发育中的新作用。小鼠神经c中Mef2c的失活导致发育过程中黑素细胞基因的表达降低,以及由于分化缺陷和黑素细胞丰度降低,出生时色素沉着的明显丧失。我们确定了Mef2c的转录增强子,将其表达转基因小鼠胚胎中的神经c及其衍生物,包括黑素细胞。这种新颖的Mef2c神经c增强剂包含三个功能性SOX结合位点和一个必不可少的MEF2位点。我们证明,Mef2c是SOX10和MEF2通过这种进化保守的增强子的直接转录目标。此外,我们显示SOX10和MEF2C在前馈转录回路中物理相互作用并协同激活Mef2c基因,表明MEF2C可能充当Waardenburg综合征中受影响的转录途径的增强剂。

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