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首页> 外文期刊>The Journal of Experimental Biology >Metal ions suppress the abnormal taste behavior of the Drosophila mutant malvolio
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Metal ions suppress the abnormal taste behavior of the Drosophila mutant malvolio

机译:金属离子抑制果蝇突变体malvolio的异常味觉行为

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A mutation in the malvolio (Mvl) gene affects taste behavior in Drosophila melanogaster. The malvolio gene encodes a protein (MVL) that exhibits homology to the mammalian natural resistance-associated macrophage proteins, It is also homologous to the Smf1 protein from Saccharomyces cerevisiae, which we have recently demonstrated to function as a Mn2+/Zn2+ transporter. We proposed that the Drosophila and mammalian proteins, like the yeast SMF1 gene product, are metal-ion transporters, To test this hypothesis, malvolio mutant flies were allowed to develop, from egg to adulthood, on a medium containing elevated concentrations of metal ions, Mutant flies that were reared in the presence of 10 mmol l(-1) MnCl2 or FeCl2 developed into adults with recovered taste behavior, CaCl2 or MgCl2 had no effect on the mutant's taste perception, ZnCl2 inhibited the effect of MnCl2 when both ions were supplied together, Similar suppression of the abnormal taste behavior was observed when mvl mutants were fed MnCl2 or FeCl2 only at the adult stage. Furthermore, exposure of adult mutant flies to these ions in the testing plate for only 2 h was sufficient to restore normal taste behavior, The suppression of the defective taste behavior suggests that MVL functions as a Mn2+/Fe2+ transporter and that Mn2+ and/or Fe2+ are involved in the signal transduction of taste perception in Drosophila adults. [References: 32]
机译:马尔沃里奥(Mvl)基因中的突变会影响果蝇的果蝇行为。 malvolio基因编码一种蛋白(MVL),该蛋白与哺乳动物的自然抗性相关巨噬细胞蛋白具有同源性。它与酿酒酵母(Saccharomyces cerevisiae)的Smf1蛋白也具有同源性,我们最近证明它可充当Mn2 + / Zn2 +转运蛋白。我们提出,果蝇和哺乳动物蛋白(如酵母SMF1基因产物)都是金属离子转运蛋白。为了验证这一假设,允许马尔沃里奥突变蝇在包含高浓度金属离子的培养基上从卵发育到成年,在存在10 mmol l(-1)MnCl2或FeCl2的情况下饲养的突变体苍蝇发育成具有恢复味觉行为的成年动物,CaCl2或MgCl2对突变体的味觉没有影响,当同时提供两种离子时,ZnCl2抑制了MnCl2的作用。一起,当仅在成年阶段向MVl突变体饲喂MnCl2或FeCl2时,观察到了异常味觉行为的类似抑制。此外,成年突变体果蝇仅在测试板上暴露于这些离子2小时就足以恢复正常的味觉行为。对有缺陷的味觉行为的抑制表明,MVL充当Mn2 + / Fe2 +转运蛋白,而Mn2 +和/或Fe2 +参与果蝇成年人味觉的信号转导。 [参考:32]

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