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Insertion mutants in Drosophila melanogaster Hsc20 halt larval growth and lead to reduced iron–sulfur cluster enzyme activities and impaired iron homeostasis

机译:果蝇Hsc20中的插入突变阻止幼虫生长并导致铁硫簇酶活性降低和铁稳态破坏

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摘要

Despite the prominence of iron–sulfur cluster (ISC) proteins in bioenergetics, intermediary metabolism, and redox regulation of cellular, mitochondrial, and nuclear processes, these proteins have been given scarce attention in Drosophila. Moreover, biosynthesis and delivery of ISCs to target proteins requires a highly regulated molecular network that spans different cellular compartments. The only Drosophila ISC biosynthetic protein studied to date is frataxin, in attempts to model Friedreich’s ataxia, a disease arising from reduced expression of the human frataxin homologue. One of several proteins involved in ISC biogenesis is heat shock protein cognate 20 (Hsc20). Here we characterize two piggyBac insertion mutants in Drosophila Hsc20 that display larval growth arrest and deficiencies in aconitase and succinate dehydrogenase activities, but not in isocitrate dehydrogenase activity; phenotypes also observed with ubiquitous frataxin RNA interference. Furthermore, a disruption of iron homeostasis in the mutant flies was evidenced by an apparent reduction in induction of intestinal ferritin with ferric iron accumulating in a subcellular pattern reminiscent of mitochondria. These phenotypes were specific to intestinal cell types that regulate ferritin expression, but were notably absent in the iron cells where ferritin is constitutively expressed and apparently translated independently of iron regulatory protein 1A. Hsc20 mutant flies represent an independent tool to disrupt ISC biogenesis in vivo without using the RNA interference machinery.
机译:尽管铁硫簇(ISC)蛋白在生物能学,中间代谢以及细胞,线粒体和核过程的氧化还原调节中占有重要地位,但果蝇却很少关注这些蛋白。此外,ISC的生物合成和向目标蛋白的递送需要跨不同细胞区室的高度调控的分子网络。迄今为止,研究中唯一的果蝇ISC生物合成蛋白是frataxin,它试图模拟Friedreich的共济失调,这是一种由于人类frataxin同源物表达降低而引起的疾病。与ISC生物发生有关的几种蛋白质之一是热激蛋白同源20(Hsc20)。在这里,我们表征果蝇Hsc20中的两个piggyBac插入突变体,它们显示幼虫生长停滞和乌头酸酶和琥珀酸脱氢酶活性的缺陷,但不表现出异柠檬酸脱氢酶的活性。普遍存在的frataxin RNA干扰也观察到了该表型。此外,突变体果蝇中铁稳态的破坏被肠铁蛋白的诱导明显减少,而铁蛋白以线粒体的亚细胞形式蓄积在铁中。这些表型特定于调节铁蛋白表达的肠道细胞类型,但在铁蛋白组成性表达且显然独立于铁调节蛋白1A进行翻译的铁细胞中并不存在。 Hsc20突变体蝇代表了一种独立的工具,可以在不使用RNA干扰机制的情况下破坏体内的ISC生物发生。

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