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凝集素在鲎先天免疫中的作用。

Role of lectins in the innate immunity of horseshoe crab.

作者信息

Kawabata S, Iwanaga S

机构信息

Department of Biology, Kyushu University, Fukuoka, Japan.

出版信息

Dev Comp Immunol. 1999 Jun-Jul;23(4-5):391-400. doi: 10.1016/s0145-305x(99)00019-1.

Abstract

We have purified five types of lectins, named tachylectins, from circulating hemocytes and hemolymph plasma of the Japanese horseshoe crab, Tachypleus tridentatus. Tachylectin-1 interacts with Gram-negative bacteria probably through 2-keto-3-deoxyoctonate, one of the constituents of lipopolysaccharides (LPS). Tachylectin-1 also binds to polysaccharides such as agarose and dextran with broad specificity. Tachylectin-2 binds to D-GlcNAc or D-GalNAc and recognizes staphylococcal lipoteichoic acids and LPS from several Gram-negative bacteria. In contrast, tachylectins-3 and -4 specifically bind to S-type LPS from several Gram-negative bacteria through a certain sugar moiety on the O-specific polysaccharides (O-antigens). Tachylectin-5 identified in hemolymph plasma has the strongest bacterial agglutinating activity in the five types of tachylectins, and exhibits broad specificity against acetyl group-containing substances. Thus, the innate immune system of horseshoe crab may recognize invading pathogens through a combinatorial method using lectins with different specificities against carbohydrates exposed on pathogens. An encounter of these lectins derived from hemocytes and hemolymph plasma at injured sites, in response to the stimulation of LPS, suggests that they serve synergistically to accomplish an effective host defense against invading microbes and foreign substances.

摘要

我们从日本鲎(Tachypleus tridentatus)的循环血细胞和血淋巴血浆中纯化出了五种凝集素,命名为速激凝集素。速激凝集素-1可能通过脂多糖(LPS)的成分之一2-酮-3-脱氧辛酸与革兰氏阴性菌相互作用。速激凝集素-1还能广泛特异性地结合琼脂糖和葡聚糖等多糖。速激凝集素-2能结合D-葡萄糖胺或D-半乳糖胺,并识别几种革兰氏阴性菌的葡萄球菌脂磷壁酸和LPS。相比之下,速激凝集素-3和-4通过O-特异性多糖(O-抗原)上的特定糖部分特异性结合几种革兰氏阴性菌的S型LPS。在血淋巴血浆中鉴定出的速激凝集素-5在这五种速激凝集素中具有最强的细菌凝集活性,并对含乙酰基的物质表现出广泛的特异性。因此,鲎的先天免疫系统可能通过一种组合方法来识别入侵的病原体,即使用对病原体表面暴露的碳水化合物具有不同特异性的凝集素。这些来自血细胞和血淋巴血浆的凝集素在受伤部位因LPS的刺激而相遇,这表明它们协同作用以实现对入侵微生物和外来物质的有效宿主防御。

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