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Transcription factor hierarchy in Waardenburg syndrome: regulation of MITF expression by SOX10 and PAX3.

机译:Waardenburg综合征的转录因子等级:SOX10和PAX3对MITF表达的调节。

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摘要

Waardenburg syndrome (WS) is associated with neural crest-derived melanocyte deficiency caused by mutations in either one of three transcription factors: MITF, PAX3, and SOX10. However, the hierarchical relationship of these transcription factors is largely unknown. We show that SOX10 is capable of transactivating the MITF promoter 100-fold, and that this transactivation is further stimulated by PAX3. Promoter deletion and mutational analyses indicate that SOX10 can activate MITF expression through binding to a region that is evolutionarily conserved between the mouse and human MITF promoters. A SOX10 mutant that models C-terminal truncations in WS can reduce wild-type SOX10 induction of MITF, suggesting these mutations may act in a dominant-negative fashion. Our data support a model in which the hypopigmentation in WS, of which these factors have been implicated, results from a disruption in function of the central melanocyte transcription factor MITF.
机译:Waardenburg综合征(WS)与神经转录源性黑素细胞缺乏症有关,后者由以下三种转录因子之一的突变引起:MITF,PAX3和SOX10。但是,这些转录因子的等级关系在很大程度上是未知的。我们显示SOX10能够反式激活MITF启动子100倍,并且该反式激活被PAX3进一步刺激。启动子缺失和突变分析表明,SOX10可通过与小鼠和人类MITF启动子之间进化上保守的区域结合而激活MITF表达。在WS中模拟C端截短的SOX10突变体可以减少MITF的野生型SOX10诱导,表明这些突变可能以显性负性方式起作用。我们的数据支持其中中枢黑素细胞转录因子MITF功能中断导致WS中色素沉着不足的模型。

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