首页> 外文期刊>Development >Melanocyte development in vivo and in neural crest cell cultures: crucial dependence on the Mitf basic-helix-loop-helix-zipper transcription factor.
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Melanocyte development in vivo and in neural crest cell cultures: crucial dependence on the Mitf basic-helix-loop-helix-zipper transcription factor.

机译:体内和神经c细胞培养物中黑素细胞的发育:对Mitf基本-螺旋-环-螺旋-拉链转录因子的关键依赖性。

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The more than 20 different Mitf mutations in the mouse are all associated with deficiencies in neural crest-derived melanocytes that range from minor functional disturbances with some alleles to complete absence of mature melanocytes with others. In the trunk region of wild-type embryos, Mitf-expressing cells that coexpressed the melanoblast marker Dct and the tyrosine kinase receptor Kit were found in the dorsolateral neural crest migration pathway. In contrast, in embryos homozygous for an Mitf allele encoding a non-functional Mitf protein, Mitf-expressing cells were extremely rare, no Dct expression was ever found, and the number of Kit-expressing cells was much reduced. Wild-type neural crest cell cultures rapidly gave rise to cells that expressed Mitf and coexpressed Kit and Dct. With time in culture, Kit expression was increased, and pigmented, dendritic cells developed. Addition of the Kit ligand Mgf or endothelin 3 or a combination of these factors all rapidly increased the number of Dct-positive cells. Cultures from Mitf mutant embryos initially displayed Mitf-positive cells similar in numbers and Kit-expression as did wild-type cultures. However, Kit expression did not increase with time in culture and the mutant cells never responded to Mgf or endothelin 3, did not express Dct, and never showed pigment. In fact, even Mitf expression was rapidly lost. The results suggest that Mitf first plays a role in promoting the transition of precursor cells to melanoblasts and subsequently, by influencing Kit expression, melanoblast survival.
机译:小鼠中20多种不同的Mitf突变都与神经c衍生的黑素细胞缺乏有关,其范围包括某些等位基因的轻微功能紊乱,以及其他等位基因完全不存在成熟的黑素细胞。在野生型胚胎的躯干区域,在背外侧神经c迁移途径中发现了共表达黑素母细胞标志物Dct和酪氨酸激酶受体试剂盒的表达Mitf的细胞。相反,在编码非功能性Mitf蛋白的Mitf等位基因纯合的胚胎中,表达Mitf的细胞极为罕见,从未发现过Dct表达,并且表达Kit的细胞数量大大减少。野生型神经c细胞培养物迅速产生表达Mitf并共表达Kit和Dct的细胞。随着培养时间的增长,Kit表达增加,并且色素沉着的树突状细胞发育。试剂盒配体Mgf或内皮素3或这些因素的组合都迅速增加了Dct阳性细胞的数量。 Mitf突变体胚胎的培养物最初显示出Mitf阳性细胞,其数量和Kit表达与野生型培养物相似。但是,试剂盒的表达在培养中不会随时间增加,并且突变细胞从未响应Mgf或内皮素3,不表达Dct,也从未显示色素。实际上,甚至连Mitf表情也很快消失了。结果表明,Mitf首先在促进前体细胞向黑素母细胞的转化中起作用,随后通过影响Kit的表达来促进黑素母细胞的存活。

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