Guz Nurper, Attardo Geoffrey M, Wu Yineng, Aksoy Serap
Department of Epidemiology and Public Health, Yale University School of Medicine, 60 College Street, 606 LEPH, New Haven, CT 06510, USA.
J Insect Physiol. 2007 Jul;53(7):715-23. doi: 10.1016/j.jinsphys.2007.03.013. Epub 2007 Apr 1.
Iron is an essential element for metabolic processes intrinsic to life, and yet the properties that make iron a necessity also make it potentially deleterious. To avoid harm, iron homeostasis is achieved via proteins involved in transport and storage of iron, one of which is transferrin. We describe the temporal and spatial aspects of transferrin (GmmTsf) expression and its transcriptional regulation in tsetse where both the male and female are strictly hematophagous. Using Northern, Western and immunohistochemical analysis, we show that GmmTsf is abundant in the hemolymph and is expressed in the adult developmental stages of male and female insects. It is preferentially expressed in the female milk gland tubules and its expression appears to be cyclical and possibly regulated in synchrony with the oogenic and/or larvigenic cycle. Although no mRNA is detected, GmmTsf protein is present in the immature stages of development, apparently being transported into the intrauterine larva from the mother via the milk gland ducts. Transferrin is also detected in the vitellogenic ovary and the adult male testes, further supporting its classification as a vitellogenic protein. Similar to reports in other insects, transferrin mRNA levels increase upon bacterial challenge in tsetse suggesting that transferrin may play an additional role in immunity. Although transferrin expression is induced following bacterial challenge, it is significantly reduced in tsetse carrying midgut trypanosome infections. Analysis of tsetse that have cured the parasite challenge shows normal levels of GmmTsf. This observation suggests that the parasite in competing for the availability of limited dietary iron may manipulate host gene expression.
铁是生命内在代谢过程所必需的元素,然而使铁成为必需元素的特性也使其具有潜在的有害性。为避免危害,通过参与铁运输和储存的蛋白质实现铁稳态,其中之一是转铁蛋白。我们描述了采采蝇中转铁蛋白(GmmTsf)表达的时空方面及其转录调控,采采蝇的雄性和雌性均严格以血为食。通过Northern、Western和免疫组织化学分析,我们表明GmmTsf在血淋巴中含量丰富,在雄性和雌性昆虫的成虫发育阶段均有表达。它优先在雌性乳腺小管中表达,其表达似乎具有周期性,可能与卵子发生和/或幼虫发生周期同步调节。尽管未检测到mRNA,但GmmTsf蛋白存在于发育的未成熟阶段,显然是从母亲通过乳腺导管运输到子宫内幼虫体内的。在卵黄发生期的卵巢和成年雄性睾丸中也检测到转铁蛋白,进一步支持其作为卵黄发生蛋白的分类。与其他昆虫的报道类似,采采蝇在受到细菌攻击后转铁蛋白mRNA水平会升高,这表明转铁蛋白可能在免疫中发挥额外作用。尽管在细菌攻击后转铁蛋白表达会被诱导,但在携带中肠锥虫感染的采采蝇中其表达会显著降低。对已治愈寄生虫攻击的采采蝇的分析显示GmmTsf水平正常。这一观察结果表明,寄生虫在竞争有限的膳食铁的可用性时可能会操纵宿主基因表达。