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一种来自犬钩虫的成孔溶血素。

A pore-forming haemolysin from the hookworm, Ancylostoma caninum.

作者信息

Don Tegan A, Jones Malcolm K, Smyth Danielle, O'Donoghue Peter, Hotez Peter, Loukas Alex

机构信息

Division of Infectious Diseases and Immunology, Helminth Biology Laboratory, Queensland Institute of Medical Research, 300 Herston Rd, Brisbane, Qld 4006, Australia.

出版信息

Int J Parasitol. 2004 Aug;34(9):1029-35. doi: 10.1016/j.ijpara.2004.04.013.

Abstract

Hookworms feed on blood, but the mechanism by which they lyse ingested erythrocytes is unknown. Here we show that Ancylostoma caninum, the common dog hookworm, expresses a detergent soluble, haemolytic factor. Activity was identified in both adult and larval stages, was heat-stable and unaffected by the addition of protease inhibitors, metal ions, chelators and reducing agents. Trypsin ablated lysis indicating that the haemolysin is a protein. A closely migrating doublet of hookworm proteins with apparent molecular weights of 60-65 kDa bound to the erythrocyte membrane after lysis of cells using both unlabeled and biotinylated detergent-solubilised hookworm extracts. In addition, separation of detergent-soluble parasite extracts using strong cation-exchange chromatography, resulted in purification of 60-65 kDa proteins with trypsin-sensitive haemolytic activity. Erythrocytes lysed with particulate, buffer-insoluble worm extracts were observed using scanning electron microscopy and appeared as red cell ghosts with approximately 100 nm diameter pores formed in the cell membranes. Red blood cell ghosts remained visible indicating that lysis was likely caused by pore formation and followed by osmotic disruption of the cell.

摘要

钩虫以血液为食,但其裂解摄入红细胞的机制尚不清楚。在此我们表明,常见的犬钩虫——犬钩口线虫表达一种可溶于去污剂的溶血因子。在成虫和幼虫阶段均检测到了活性,该活性对热稳定,且不受蛋白酶抑制剂、金属离子、螯合剂和还原剂添加的影响。胰蛋白酶消除了裂解作用,表明溶血素是一种蛋白质。使用未标记和生物素化的去污剂溶解的钩虫提取物裂解细胞后,与红细胞膜结合的明显分子量为60 - 65 kDa的紧密迁移的双峰钩虫蛋白。此外,使用强阳离子交换色谱法分离去污剂可溶的寄生虫提取物,得到了具有胰蛋白酶敏感溶血活性的60 - 65 kDa蛋白质的纯化产物。使用扫描电子显微镜观察用颗粒状、缓冲液不溶性虫体提取物裂解的红细胞,其呈现为红细胞血影,细胞膜上形成了直径约100 nm的孔。红细胞血影仍然可见,表明裂解可能是由孔形成引起的,随后是细胞的渗透破坏。

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