首页> 外文OA文献 >The microneme proteins EtMIC4 and EtMIC5 of Eimeria tenella form a novel, ultra-high molecular mass protein complex that binds target host cells.
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The microneme proteins EtMIC4 and EtMIC5 of Eimeria tenella form a novel, ultra-high molecular mass protein complex that binds target host cells.

机译:艾美耳球虫的微nemene蛋白EtMIC4和EtMIC5形成了一种新型的超高分子量蛋白复合物,可与靶宿主细胞结合。

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摘要

Eimeria tenella, in common with other parasitic protozoa of the phylum Apicomplexa, invades host cells using an actinomyosin-powered "glideosome" complex and requires the secretion of adhesive proteins from the microneme organelles onto the parasite surface. Microneme proteins of E. tenella include EtMIC4, a transmembrane protein that has multiple thrombospondin type I domains and calcium-binding epidermal growth factor-like domains in its extracellular domain, and EtMIC5, a soluble protein composed of 11 tandemly repeated domains that belong to the plasminogen-apple-nematode superfamily. We show here that EtMIC4 and EtMIC5 interact to form an oligomeric, ultrahigh molecular mass protein complex. The complex was purified from lysed parasites by non-denaturing techniques, and the stoichiometry was shown to be [EtMIC4](2):[EtMIC5](1), with an octamer of EtMIC4 bound non-covalently to a tetramer of EtMIC5. The complex is formed within the parasite secretory pathway and is maintained after secretion onto the surface of the parasite. The purified complex binds to a number of epithelial cell lines in culture. Identification and characterization of this complex contributes to an overall understanding of the role of multimolecular protein complexes in specific interactions between pathogens and their hosts during infection.
机译:翼状艾美球虫(Eimeria tenella)与其他复杂的蚜虫门原虫一样,使用放线菌素驱动的“胶体”复合物侵入宿主细胞,并需要从微nemene细胞器分泌粘附蛋白到寄生虫表面。大肠杆菌的微nemene蛋白包括EtMIC4(一种跨膜蛋白,在其细胞外结构域中具有多个I型血小板反应蛋白结构域和钙结合表皮生长因子样结构域),以及EtMIC5(一种可溶性蛋白,由11个串联重复结构域组成)纤溶酶原-苹果线虫超家族。我们在这里显示EtMIC4和EtMIC5相互作用形成寡聚,超高分子量蛋白质复合物。通过非变性技术从裂解的寄生虫中纯化复合物,化学计量显示为[EtMIC4](2):[EtMIC5](1),其中EtMIC4的八聚物与EtMIC5的四聚体非共价结合。该复合物在寄生虫的分泌途径内形成,并在分泌到寄生虫的表面上后得以维持。纯化的复合物与培养物中的许多上皮细胞系结合。该复合物的鉴定和表征有助于全面了解多分子蛋白质复合物在感染过程中病原体与其宿主之间的特异性相互作用中的作用。

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