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transparent, a gene affecting stripe formation in Zebrafish, encodes the mitochondrial protein Mpv17 that is required for iridophore survival

机译:透明,一个影响斑马鱼条纹形成的基因,编码虹膜虹膜生存所需的线粒体蛋白Mpv17

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In the skin of adult zebrafish, three pigment cell types arrange into alternating horizontal stripes, melanophores in dark stripes, xanthophores in light interstripes and iridophores in both stripes and interstripes. The analysis of mutants and regeneration studies revealed that this pattern depends on interactions between melanophores and xanthophores; however, the role of iridophores in this process is less understood. We describe the adult viable and fertile mutant transparent (tra) , which shows a loss or strong reduction of iridophores throughout larval and adult stages. In addition, in adults only the number of melanophores is strongly reduced, and stripes break up into spots. Stripes in the fins are normal. By cell transplantations we show that tra acts cell-autonomously in iridophores, whereas the reduction in melanophores in the body occurs secondarily as a consequence of iridophore loss. We conclude that differentiated iridophores are required for the accumulation and maintenance of melanophores during pigment pattern formation. The tra mutant phenotype is caused by a small deletion in mpv17 , an ubiquituously expressed gene whose protein product, like its mammalian and yeast homologs, localizes to mitochondria. Iridophore death might be the result of mitochondrial dysfunction, consistent with the mitochondrial DNA depletion syndrome observed in mammalian mpv17 mutants. The specificity of the tra phenotype is most likely due to redundancy after gene multiplication, making this mutant a valuable model to understand the molecular function of Mpv17 in mitochondria.
机译:在成年斑马鱼的皮肤中,三种色素细胞类型排列成交替的水平条纹,黑色条纹的黑素细胞,浅色条纹的黄体和条纹和条纹的虹彩。对突变体的分析和再生研究表明,这种模式取决于黑素细胞和黄体细胞之间的相互作用。然而,虹膜团在这一过程中的作用尚不清楚。我们描述了成年的可行和可育的突变体透明(tra),这表明整个幼虫和成年阶段的虹膜的丢失或强烈减少。另外,在成年人中,仅黑素细胞的数目大大减少,并且条纹分解成斑点。鳍中的条纹是正常的。通过细胞移植,我们表明tra在虹膜细胞中自主地发挥作用,而体内虹膜细胞的减少是虹膜虹膜丧失的第二个原因。我们得出的结论是,在颜料图案形成过程中,对于黑色素的积累和维持,需要有区别的铱基团。 tra突变表型是由mpv17中的一个小缺失引起的。mpv17是一个普遍表达的基因,其蛋白产物(如其哺乳动物和酵母同源物)位于线粒体中。虹膜虹膜的死亡可能是线粒体功能障碍的结果,这与在哺乳动物mpv17突变体中观察到的线粒体DNA耗竭综合征一致。 tra表型的特异性很可能是由于基因倍增后的冗余,使得该突变体成为了解Mpv17在线粒体中分子功能的有价值的模型。

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