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Computational characterization of Iron metabolism in the Tsetse disease vector Glossina morsitans: IRE stem-loops

机译:采采蝇病媒介中的铁代谢的计算表征:莫斯吉斯草:IRE茎环

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摘要

BackgroundIron metabolism and regulation is an indispensable part of species survival, most importantly for blood feeding insects. Iron regulatory proteins are central regulators of iron homeostasis, whose binding to iron response element (IRE) stem-loop structures within the UTRs of genes regulate expression at the post-transcriptional level. Despite the extensive literature on the mechanism of iron regulation in human, less attention has been given to insect and more specifically the blood feeding insects, where research has mainly focused on the characterization of ferritin and transferrin. We thus, examined the mechanism of iron homeostasis through a genome-wide computational identification of IREs and other enriched motifs in the UTRs of Glossina morsitans with the view to identify new IRE-regulated genes.
机译:背景技术铁的代谢和调节是物种生存不可或缺的一部分,最重要的是对于吸血昆虫。铁调节蛋白是铁稳态的中央调节剂,其与基因的UTR中铁反应元件(IRE)茎环结构的结合在转录后水平上调节表达。尽管有大量文献报道了人类对铁的调节机制,但对昆虫的关注较少,尤其是对采血昆虫的关注,对昆虫的研究主要集中在铁蛋白和转铁蛋白的表征上。因此,我们通过全基因组计算的IREs和Glossina morsitans的UTRs中其他丰富的基序,对铁稳态的机制进行了研究,以期确定新的IRE调控基因。

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