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A Dual Role for SOX10 in the Maintenance of the Postnatal Melanocyte Lineage and the Differentiation of Melanocyte Stem Cell Progenitors

机译:SOX10在维持产后黑素细胞谱系和黑素细胞干细胞祖细胞分化中的双重作用。

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摘要

During embryogenesis, the transcription factor, Sox10, drives the survival and differentiation of the melanocyte lineage. However, the role that Sox10 plays in postnatal melanocytes is not established. We show in vivo that melanocyte stem cells (McSCs) and more differentiated melanocytes express SOX10 but that McSCs remain undifferentiated. Sox10 knockout (Sox10fl; Tg(Tyr::CreER)) results in loss of both McSCs and differentiated melanocytes, while overexpression of Sox10 (Tg(DctSox10)) causes premature differentiation and loss of McSCs, leading to hair graying. This suggests that levels of SOX10 are key to normal McSC function and Sox10 must be downregulated for McSC establishment and maintenance. We examined whether the mechanism of Tg(DctSox10) hair graying is through increased expression of Mitf, a target of SOX10, by asking if haploinsufficiency for Mitf (Mitfvga9) can rescue hair graying in Tg(DctSox10) animals. Surprisingly, Mitfvga9 does not mitigate but exacerbates Tg(DctSox10) hair graying suggesting that MITF participates in the negative regulation of Sox10 in McSCs. These observations demonstrate that while SOX10 is necessary to maintain the postnatal melanocyte lineage it is simultaneously prevented from driving differentiation in the McSCs. This data illustrates how tissue-specific stem cells can arise from lineage-specified precursors through the regulation of the very transcription factors important in defining that lineage.
机译:在胚胎发生过程中,转录因子Sox10驱动黑素细胞谱系的存活和分化。但是,尚未确定Sox10在产后黑色素细胞中的作用。我们在体内显示黑素细胞干细胞(McSCs)和分化程度更高的黑素细胞表达SOX10,但McSCs仍未分化。 Sox10基因敲除(Sox10 fl ; Tg(Tyr :: CreER))导致McSCs和分化的黑素细胞丢失,而Sox10(Tg(DctSox10))的过表达导致McSCs的过早分化和丢失,从而导致头发变白。这表明SOX10的水平是正常McSC功能的关键,因此必须下调Sox10才能建立和维护McSC。通过询问Mitf的单倍剂量不足(Mitf vga9 )是否可以挽救Tg(DctSox10)中的头发变白,我们检查了Tg(DctSox10)头发变白的机理是否是通过增加Mitf(SOX10的靶标)的表达来实现的。动物。出人意料的是,Mitf vga9 不会减轻但加剧了Tg(DctSox10)的头发变白,表明MITF参与了McSCs中Sox10的负调控。这些观察结果表明,尽管SOX10是维持产后黑素细胞谱系所必需的,但同时也阻止了它在McSCs中驱动分化。该数据说明了如何通过对定义该谱系很重要的转录因子的调控,从谱系指定的前体中产生组织特异性干细胞。

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