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家蚕血淋巴中一种新型C型凝集素——家蚕多结合蛋白的特性:广泛识别微生物的机制及其在免疫中的作用

Characterization of a novel C-type lectin, Bombyx mori multibinding protein, from the B. mori hemolymph: mechanism of wide-range microorganism recognition and role in immunity.

作者信息

Watanabe Ayako, Miyazawa Sousui, Kitami Madoka, Tabunoki Hiroko, Ueda Kenjiro, Sato Ryoichi

机构信息

Graduate School of Bio-Applications and Systems Engineering, Tokyo University of Agriculture and Technology, Naka-cho 2-24-16, Koganei, Tokyo 185-8588, Japan.

出版信息

J Immunol. 2006 Oct 1;177(7):4594-604. doi: 10.4049/jimmunol.177.7.4594.

Abstract

To investigate the system used by insects to recognize invading microorganisms, we examined proteins from the larval hemolymph of Bombyx mori that bind to the cell surface of microorganisms. Two hemolymph proteins that bound to the cell surfaces of Micrococcus luteus and Saccharomyces cerevisiae were shown to be identical. This protein bound to all 11 microorganisms examined-5 Gram-negative bacteria, 3 Gram-positive bacteria, and 3 yeasts-and was consequently designated B. mori multibinding protein (BmMBP). The sequence of the cDNA encoding BmMBP revealed that it was a C-type lectin with two dissimilar carbohydrate-recognition domains (CRD1 and CRD2) distantly related to known insect C-type lectins. CRD1 and CRD2 were prepared as recombinant proteins and their binding properties were investigated using inhibition assays. Each domain had wide, dissimilar binding spectra to sugars. These properties enable BmMBP to bind to two sites on a microorganism, facilitating high-affinity binding to many types of microorganisms. The dissociation constants of BmMBP with M. luteus cells and S. cerevisiae were 1.23 x 10(-8) and 1.00 x 10(-11) M, respectively. rBmMBP triggered the aggregation of hemocytes from B. mori larvae in vitro and microorganisms recognized by BmMBP were surrounded by aggregated hemocytes in vivo, forming a nodule, which is the typical cellular reaction in insect immune responses. These observations suggest that BmMBP functions as a trigger for the nodule reaction and that the multirecognition characteristic of BmMBP plays an important role in the early stages of infection by a variety of microorganisms.

摘要

为了研究昆虫识别入侵微生物所使用的系统,我们检测了家蚕幼虫血淋巴中与微生物细胞表面结合的蛋白质。结果表明,两种与藤黄微球菌和酿酒酵母细胞表面结合的血淋巴蛋白质是相同的。这种蛋白质能与所检测的全部11种微生物结合,包括5种革兰氏阴性菌、3种革兰氏阳性菌和3种酵母,因此被命名为家蚕多结合蛋白(BmMBP)。编码BmMBP的cDNA序列显示,它是一种C型凝集素,具有两个与已知昆虫C型凝集素亲缘关系较远的不同碳水化合物识别结构域(CRD1和CRD2)。CRD1和CRD2被制备成重组蛋白,并通过抑制试验研究它们的结合特性。每个结构域对糖类具有广泛且不同的结合谱。这些特性使BmMBP能够与微生物上的两个位点结合,从而促进其与多种类型微生物的高亲和力结合。BmMBP与藤黄微球菌细胞和酿酒酵母的解离常数分别为1.23×10^(-8)和1.00×10^(-11) M。重组BmMBP(rBmMBP)在体外能引发家蚕幼虫血细胞的聚集,并且在体内,被BmMBP识别的微生物会被聚集的血细胞包围,形成结节,这是昆虫免疫反应中的典型细胞反应。这些观察结果表明,BmMBP作为结节反应的触发因子发挥作用,并且BmMBP的多重识别特性在多种微生物感染的早期阶段起着重要作用。

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