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Cloning, overexpression and characterization of iron regulatory proteins from insects

机译:昆虫铁调节蛋白的克隆,过表达和表征

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摘要

Iron is essential for life and iron homeostasis is important for all species. Compared to the understanding of iron metabolisms in vertebrates, we know much less about insect intracellular iron homeostasis. The iron regulatory proteins (IRPs) play central roles in this process by interaction with iron responsive elements (IREs). Here, I report the cloning, sequencing, overexpression, purification and characterization of IRP1s from two insect species, Manduca sexta and Aedes aegypti. Electrophoretic mobility shift assays demonstrated that both IRP1s specifically bind IREs s not only from the same species, but also from human ferritin IRE. Another ferritin subunit also was cloned from Manduca sexta and an IRE was identified in the 5'-untranslated region of the mRNA, and the IRE reacted with Manduca IRP1 specifically. Transcription/translation assays demonstrated that both IRP1s repress ferritin synthesis in vitro, and the repression is IRE dependent. Iron administration to Manduca sexta increased hemolymph ferritin levels and decreased fat body IRP1/IRE binding activities without affecting either the IRP1 mRNA or protein levels. These data indicates that translational control of ferritin synthesis by IRP1/IRE interaction could occur in insects in a manner similar to that of mammals. To our knowledge this is the first report of the control of insect ferritin synthesis by IRP1/IRE interaction. The different responses to reducing agent of Manduca sexta and mammalian IRP1s could provide a potential future strategy for designing pesticides in insect control.
机译:铁是生命必不可少的,铁稳态对所有物种都至关重要。与对脊椎动物铁代谢的了解相比,我们对昆虫细胞内铁稳态的了解要少得多。铁调节蛋白(IRP)通过与铁反应元件(IREs)的相互作用在此过程中发挥核心作用。在这里,我报告了来自两种昆虫物种曼杜卡六倍体和埃及伊蚊的IRP1的克隆,测序,过表达,纯化和表征。电泳迁移率变动分析表明,两种IRP1不仅与相同物种的IRES特异性结合,而且与人铁蛋白IRE的IRES特异性结合。另一个铁蛋白亚基也被从六倍体Manduca sexta中克隆出来,并在mRNA的5'-非翻译区中鉴定出IRE,并且IRE与Manduca IRP1发生了特异性反应。转录/翻译分析表明,两种IRP1均可在体外抑制铁蛋白的合成,且这种抑制作用是IRE依赖性的。铁对六头Man的施用增加了血淋巴铁蛋白的水平,降低了脂肪体IRP1 / IRE的结合活性,而不影响IRP1 mRNA或蛋白质水平。这些数据表明,通过IRP1 / IRE相互作用对铁蛋白合成的翻译控制可能以类似于哺乳动物的方式在昆虫中发生。据我们所知,这是通过IRP1 / IRE相互作用控制昆虫铁蛋白合成的首次报道。对六倍体曼陀罗和哺乳动物IRP1s还原剂的不同反应可能为设计昆虫控制农药提供潜在的未来策略。

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    Zhang Dianzheng;

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  • 年度 2001
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