Vivien Shek, Abhishek Jamwal, Danielle J Smyth, Tania Frangova, Alice R Savage, Sarah Kelly, Gavin J Wright, Rachel Toth, Erich M Schwarz, Rick M Maizels, Matthew K Higgins, Alasdair C Ivens, Hermelijn H Smits, Henry J McSorley
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引用次数: 0
摘要
蠕虫感染通过释放免疫调节蛋白来影响宿主免疫,从而阻止免疫排斥,从而持续存在。肠线虫(Hpb)分泌多个免疫调节蛋白家族,其中许多是由连续的补体控制蛋白(CCP)结构域组成。我们假设寄生虫分泌更多的CCP结构域蛋白来与宿主相互作用。我们在Hpb基因组中发现了异常大量的CCP结构域蛋白,并克隆了一系列这些蛋白,用于基于亲和力的细胞外相互作用筛选(AVEXIS)试验,重点是与宿主免疫蛋白的相互作用。该筛选证实了已知的免疫调节剂(HpBARI, TGM1)与其靶标(ST2, TGFBR2)的结合,并发现了2ccp结构域Hpb蛋白与小鼠抵抗素样分子β (RELMβ)之间的新相互作用,RELMβ是一种具有抗蠕虫特性的宿主蛋白。该蛋白被命名为binding of RELMβ (HpBoRB)。这种相互作用具有特异性和热不稳定性,并在ELISA、竞争分析、尺寸排除色谱和表面等离子体共振实验中得到证实,确定了HpBoRB和RELMβ之间的亚纳摩尔亲和力相互作用。这些数据可能表明,Hpb干扰了有效的抗蠕虫宿主蛋白RELMβ,并增加了我们对Hpb分泌蛋白介导的宿主-寄生虫相互作用的认识。
HpBoRB, a helminth-derived CCP domain protein which binds RELMβ.
Helminth infections persist by influencing host immunity through the release of immunomodulatory proteins which prevent immune ejection. The intestinal nematode Heligmosomoides polygyrus bakeri (Hpb) secretes multiple families of immunomodulatory proteins, many of which are composed of consecutive Complement Control Protein (CCP) domains. We hypothesised that further CCP domain proteins are secreted by the parasite to interact with the host. We identified an unusually large number of CCP domain-containing proteins in the genome of Hpb, and cloned a range of these for screening in an Avidity-based Extracellular Interaction Screening (AVEXIS) assay, focussing on interactions with host immune proteins. This screen confirmed the binding of known immunomodulators (HpBARI, TGM1) for their targets (ST2, TGFBR2) and identified a new interaction between a 2 CCP domain Hpb protein and mouse resistin-like molecule beta (RELMβ), a host protein demonstrated to have anti-helminth properties. This protein was named Binder of RELMβ (HpBoRB). This interaction was specific and heat-labile, and was confirmed in ELISA, competition assays, size exclusion chromatography and surface plasmon resonance experiments, identifying a subnanomolar affinity interaction between HpBoRB and RELMβ. These data may indicate that Hpb interferes with the potent anti-helminth host protein RELMβ and adds to our knowledge of the host-parasite interactions mediated by Hpb secreted proteins.
期刊介绍:
International Journal for Parasitology offers authors the option to sponsor nonsubscriber access to their articles on Elsevier electronic publishing platforms. For more information please view our Sponsored Articles page. The International Journal for Parasitology publishes the results of original research in all aspects of basic and applied parasitology, including all the fields covered by its Specialist Editors, and ranging from parasites and host-parasite relationships of intrinsic biological interest to those of social and economic importance in human and veterinary medicine and agriculture.