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首页> 外文期刊>Journal of Fish Diseases >Characterization of glycans in the developmental stages of Myxobolus cerebralis (Myxozoa), the causative agent of whirling disease
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Characterization of glycans in the developmental stages of Myxobolus cerebralis (Myxozoa), the causative agent of whirling disease

机译:旋风病的病原体脑粘液(Myxozoa)发育阶段的聚糖特征

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摘要

Glycans and sugar-binding molecules (lectins) form an interactive recognition system, which may enable parasitic organisms to adhere to host cells and migrate into target tissues. The aim of the present study was to analyse surface-associated glycans in the developmental stages of Myxobolus cerebralis (Hofer), the causative agent of whirling disease. A panel of biotin-labelled plant lectins was used to detect a broad spectrum of glycan motifs with high specificity. Binding sites were detected histochemically in the tissue sections of infected rainbow trout, Oncorhynchus mykiss (Walbaum), and infected Tubifex tubifex (Muller), and were characterized by light, fluorescence and transmission electron microscopy. With mannose-specific lectins [Lens culinaris agglutinin, Pisum sativum agglutinin, Canavalia ensiformis agglutinin (LCA, PSA, CanA)] mannose-containing glycans were detected in all the developmental stages and host tissues. No binding sites for galactose-specific lectins were present in M. cerebralis spores but reactivity with host tissues occurred. Diversity in glycans was detected by N-acetyl-D-galactosamine-specific lectins in sporoplasm cells of M. cerebralis and triactinomyxon spores. In the group of lectins with monosaccharide-specificity for N-acetyl-D-glucosamine (GlcNAc), the reactivity of Datura stramonium agglutinin (DSA), Lycopersicon esculentum agglutinin (LEA) and Solanum tuberosum agglutinin (STA) was restricted to polar capsules whereas Griffonia simplicifolia agglutinin II (GSA II) also bound to sporoplasm cells of stages in the fish host but not in those present in infected T. tubifex. Moreover, Triticum vulgaris (wheat germ) agglutinin (WGA) and succinylated WGA indicated the presence of N-acetyl-D-glucosamine polymers in polar capsules. No specificity for spores was observed concerning 'bisected'N-glycans and no reactivity in parasitic stages was observed with the fucose-binding lectin Ulex europaeus agglutinin (UEA) I, Sambucus nigra agglutinin (SNA) (specific for alpha2,6-sialylated glycans) and Maackia amurensis agglutinin (MAAI) (specific for alpha2,3-sialylated glycans). Arachis hypogaea (peanut) agglutinin (PNA), Erythrina cristagalli agglutinin (ECA), GSA I, Sophora japonica agglutinin (SJA), Dolichos biflorus agglutinin (DBA) and GSA II detected reactive sites solely confined to the developmental stages of M. cerebralis and were not reactive in the fish host. These parasite-specific glycans may play a role in the adhesion process of the parasite to fish epidermis prior to infection, but may provide protection to the host by activating the complement system, or stimulating an adaptive immune response as putative antigens.
机译:聚糖和糖结合分子(凝集素)形成一个相互作用的识别系统,该系统可使寄生生物粘附到宿主细胞上并迁移到目标组织中。本研究的目的是分析旋风病的病原体脑粘液瘤(Hofer)发育阶段的表面相关聚糖。使用一组生物素标记的植物凝集素检测具有高特异性的广谱聚糖基序。在受感染的虹鳟鱼,Oncorhynchus mykiss(Walbaum)和受感染的Tubifextubifex(Muller)的组织切片中,通过组织化学方法检测结合位点,并通过光,荧光和透射电镜进行表征。使用甘露糖特异性凝集素[Lens culinaris凝集素,Pisum sativum凝集素,Canavalia ensiformis凝集素(LCA,PSA,CanA)],在所有发育阶段和宿主组织中均检测到含甘露糖的聚糖。在脑分枝杆菌孢子中不存在半乳糖特异性凝集素的结合位点,但与宿主组织发生反应。通过N-乙酰基-D-半乳糖胺特异性凝集素在脑膜炎支原体和三放线菌孢子孢子细胞中检测到聚糖的多样性。在对N-乙酰基-D-葡糖胺(GlcNAc)具有单糖特异性的凝集素组中,曼陀罗凝结素(DSA),番茄素凝集素(LEA)和马铃薯茄凝集素(STA)的反应仅限于极性胶囊,而Griffonia simplicifolia凝集素II(GSA II)也与鱼寄主中各阶段的孢子质细胞结合,但在受感染的T.tubifex中不存在。此外,小麦(小麦胚芽)凝集素(WGA)和琥珀酰化的WGA表明极性胶囊中存在N-乙酰基-D-葡糖胺聚合物。没有观察到关于“一分为二”的N-聚糖的孢子特异性,并且未观察到与岩藻糖结合的凝集素Ulex europaeus凝集素(UEA)I,黑接骨凝集素(SNA)(对α2,6-唾液酸化聚糖具有特异性)的寄生虫反应性。 )和黑莓(Maackia amurensis)凝集素(MAAI)(特定于α2,3-唾液酸化聚糖)。花生(花生)凝集素(PNA),赤藓(Erythrina cristagalli)凝集素(ECA),GSA I,槐花槐凝集素(SJA),双花杜鹃凝集素(DBA)和GSA II检测到的反应位点仅局限于脑部和分支杆菌的发育阶段。在鱼寄主中没有反应。这些寄生虫特异性聚糖可能在感染前寄生虫与鱼表皮的粘附过程中起作用,但可能通过激活补体系统或刺激作为假定抗原的适应性免疫应答而为宿主提供保护。

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