Strickler-Dinglasan Patricia M, Guz Nurper, Attardo Geoffrey, Aksoy Serap
Department of Epidemiology and Public Health, Yale University School of Medicine, New Haven, CT 06510, USA.
Insect Biochem Mol Biol. 2006 Dec;36(12):921-33. doi: 10.1016/j.ibmb.2006.09.003. Epub 2006 Sep 26.
The regulation of iron is critical for maintaining homeostasis in the tsetse fly (Diptera: Glossinidae), in which both adult sexes are strict blood feeders. We have characterized the cDNAs for two putative iron-binding proteins (IBPs) involved in transport and storage; transferrin (GmmTsf1) and ferritin from Glossina morsitans morsitans. GmmTsf1 transcripts are detected in the female fat body and in adult reproductive tissues, and only in the adult developmental stage in a bloodmeal independent manner. In contrast, the ferritin heavy chain (GmmFer1HCH) and light chain (GmmFer2LCH) transcripts are expressed ubiquitously, suggesting a more general role for these proteins in iron transport and storage. Protein domain predictions for each IBP suggest both the conservation and loss of several motifs present in their vertebrate homologues. In concert with many other described insect transferrins (Tfs), putative secreted GmmTsf1 maintains 3 of the 5 residues necessary for iron-binding in the N-terminal lobe, but exhibits a loss of this iron-binding ability in the C-terminal lobe as well as a loss of large sequence blocks. Both putative GmmFer1HCH and GmmFer2LCH proteins have signal peptides, similar to other insect ferritins. GmmFer2LCH has lost the 5'UTR iron-responsive element (IRE) and, thus, translation is no longer regulated by cellular iron levels. On the other hand, GmmFer1HCH maintains both the conserved ferroxidase center and the 5'UTR IRE; however, transcript variants suggest a more extensive regulatory mechanism for this subunit.
铁的调节对于维持采采蝇(双翅目:舌蝇科)的体内平衡至关重要,在采采蝇中,雌雄成虫均为严格的吸血昆虫。我们已经鉴定了两种参与运输和储存的假定铁结合蛋白(IBP)的cDNA;来自 morsitans morsitans舌蝇的转铁蛋白(GmmTsf1)和铁蛋白。GmmTsf1转录本在雌性脂肪体和成年生殖组织中被检测到,并且仅在成虫发育阶段以与血餐无关的方式存在。相比之下,铁蛋白重链(GmmFer1HCH)和轻链(GmmFer2LCH)转录本广泛表达,表明这些蛋白质在铁运输和储存中具有更普遍的作用。对每个IBP的蛋白质结构域预测表明,它们在脊椎动物同源物中存在的几个基序既有保守性也有缺失。与许多其他已描述的昆虫转铁蛋白(Tfs)一致,假定分泌的GmmTsf1在N端叶中保留了铁结合所需的5个残基中的3个,但在C端叶中失去了这种铁结合能力以及大片段序列。假定的GmmFer1HCH和GmmFer2LCH蛋白都有信号肽,类似于其他昆虫铁蛋白。GmmFer2LCH失去了5'UTR铁反应元件(IRE),因此,翻译不再受细胞铁水平的调节。另一方面,GmmFer1HCH保留了保守的铁氧化酶中心和5'UTR IRE;然而,转录变体表明该亚基存在更广泛的调节机制。