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采采蝇病媒——舌蝇(Glossina morsitans)中铁代谢的计算特征:铁反应元件茎环结构

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

作者信息

Dashti Zahra Jalali Sefid, Gamieldien Junaid, Christoffels Alan

机构信息

South African Medical Research Council Bioinformatics Unit, The South African National Bioinformatics Institute (SANBI), University of the Western Cape, Robert Sobukwe Street, Bellville, South Africa.

出版信息

BMC Genomics. 2016 Aug 8;17:561. doi: 10.1186/s12864-016-2932-7.

Abstract

BACKGROUND

Iron 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.

RESULTS

We identified 150 genes, of which two are known to contain IREs, namely the ferritin heavy chain and the MRCK-alpha. The remainder of the identified genes is considered novel including 20 hypothetical proteins, for which an iron-regulatory mechanism of action was inferred. Forty-three genes were found with IRE-signatures of regulation in two or more insects, while 46 were only found to be IRE-regulated in two species. Notably 39 % of the identified genes exclusively shared IRE-signatures in other Glossina species, which are potentially Glossina-specific adaptive measures in addressing its unique reproductive biology and blood meal-induced iron overload. In line with previous findings, we found no evidence pertaining to an IRE regulation of Transferrin, which highlight the importance of ferritin heavy chain and the other proposed transporters in the tsetse fly. In the context of iron-sequestration, key players of tsetse immune defence against trypanosomes have been introduced namely 14 stress and immune response genes, while 28 cell-envelop, transport, and binding genes were assigned a putative role in iron trafficking. Additionally, we identified and annotated enriched motifs in the UTRs of the putative IRE-regulated genes to derive at a co-regulatory network that maintains iron homeostasis in tsetse flies. Three putative microRNA-binding sites namely Gy-box, Brd-box and K-box motifs were identified among the regulatory motifs, enriched in the UTRs of the putative IRE-regulated genes.

CONCLUSION

Beyond our current view of iron metabolism in insects, with ferritin and transferrin as its key players, this study provides a comprehensive catalogue of genes with possible roles in the acquisition; transport and storage of iron hence iron homeostasis in the tsetse fly.

摘要

背景

铁代谢与调节是物种生存不可或缺的一部分,对于吸血昆虫尤为重要。铁调节蛋白是铁稳态的核心调节因子,其与基因非翻译区(UTR)内的铁反应元件(IRE)茎环结构结合,在转录后水平调节基因表达。尽管关于人类铁调节机制的文献众多,但对昆虫尤其是吸血昆虫的关注较少,在吸血昆虫方面的研究主要集中在铁蛋白和转铁蛋白的特性描述上。因此,我们通过全基因组计算鉴定采采蝇UTR中的IRE和其他富集基序,以研究铁稳态机制,从而识别新的IRE调节基因。

结果

我们鉴定出150个基因,其中两个已知含有IRE,即铁蛋白重链和MRCK-α。其余鉴定出的基因被认为是新基因,包括20个假设蛋白,并推断出其铁调节作用机制。发现43个基因在两种或更多昆虫中具有IRE调节特征,而46个基因仅在两个物种中被发现受IRE调节。值得注意的是,39%的鉴定基因仅在其他采采蝇物种中共享IRE特征,这可能是采采蝇应对其独特生殖生物学和血餐诱导的铁过载的特定适应性措施。与之前的研究结果一致,我们没有发现转铁蛋白受IRE调节的证据,这突出了铁蛋白重链和采采蝇中其他拟议转运蛋白的重要性。在铁螯合方面,引入了采采蝇针对锥虫免疫防御的关键参与者,即14个应激和免疫反应基因,同时28个细胞包膜、运输和结合基因在铁运输中被赋予假定作用。此外,我们在假定的IRE调节基因的UTR中鉴定并注释了富集基序,以推导维持采采蝇铁稳态的共调节网络。在假定的IRE调节基因的UTR中富集的调节基序中,鉴定出三个假定的微小RNA结合位点,即Gy-box、Brd-box和K-box基序。

结论

本研究超越了我们目前以铁蛋白和转铁蛋白为关键参与者的昆虫铁代谢观点,提供了一份在采采蝇中铁获取、运输和储存以及铁稳态方面可能发挥作用的基因综合目录。

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