粘蛋白在宿主-寄生虫相互作用中的作用。第一部分-原生动物寄生虫

S.J. Hicks , G. Theodoropoulos , S.D. Carrington , A.P. Corfield
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引用次数: 75

摘要

寄生虫源性黏液样分子可能参与了寄生虫对宿主细胞的附着和侵袭。此外,寄生虫可能分泌黏液降解酶,使覆盖在潜在宿主粘膜表面的保护性黏液凝胶得以渗透。此外,它们可能利用特定的糖苷酶在宿主细胞的膜结合粘蛋白上产生结合配体。宿主粘蛋白和粘蛋白样分子可能阻止寄生虫的建立或促进寄生虫的排出。它们也可能作为代谢能量的来源和粘附配体,供那些适应利用它们的寄生虫使用。Sally Hicks及其同事在此综述了黏液蛋白和黏液样分子的生化特性,这些分子与原生动物寄生虫和宿主之间的相互作用(已建立的和假定的)有关。
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The Role of Mucins in Host–Parasite Interactions. Part I – Protozoan Parasites

Parasite-derived mucin-like molecules might be involved in parasite attachment to and invasion of host cells. In addition, parasites might secrete mucin-degrading enzymes, enabling the penetration of protective mucus gels that overlie the mucosal surfaces of their potential hosts. Furthermore, they might generate binding ligands on the membrane-bound mucins of host cells by using specific glycosidases. It is possible that host mucins and mucin-like molecules prevent the establishment of parasites or facilitate parasite expulsion. They might also serve as a source of metabolic energy and adhesion ligands for those parasites adapted to exploit them. Sally Hicks and colleagues here review the biochemical properties of mucins and mucin-like molecules in relation to interactions (established and putative) between protozoan parasites and their hosts.

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Websites of interest Neosporosis. Seeking new targets for antiparasitic agents Response from A. Serero et al. Parasitology nomenclature – a recommendation Implications for neonatal HIV/AIDS and TB of sensitization in utero to helminths
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