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肌毒素 II 线性 B 细胞表位的鉴定,一种来自巴西矛头蝮蛇毒液的 Lys49 磷脂酶 A₂ 同工酶。

Identification of linear B-cell epitopes on myotoxin II, a Lys49 phospholipase A₂ homologue from Bothrops asper snake venom.

机构信息

Instituto Clodomiro Picado, Facultad de Microbiología, Universidad de Costa Rica, San José, SJ 11501, Costa Rica.

出版信息

Toxicon. 2012 Oct;60(5):782-90. doi: 10.1016/j.toxicon.2012.05.028. Epub 2012 Jun 4.

Abstract

Knowledge on toxin immunogenicity at the molecular level can provide valuable information for the improvement of antivenoms, as well as for understanding toxin structure-function relationships. The aims of this study are two-fold: first, to identify the linear B-cell epitopes of myotoxin II from Bothrops asper snake venom, a Lys49 phospholipase A₂ homologue; and second, to use antibodies specifically directed against an epitope having functional relevance in its toxicity, to probe the dimeric assembly mode of this protein in solution. Linear B-cell epitopes were identified using a library of overlapping synthetic peptides spanning its complete sequence. Epitopes recognized by a rabbit antiserum to purified myotoxin II, and by three batches of a polyvalent (Crotalidae) therapeutic antivenom (prepared in horses immunized with a mixture of B. asper, Crotalus simus, and Lachesis stenophrys venoms) were mapped using an enzyme-immunoassay based on the capture of biotinylated peptides by immobilized streptavidin. Some of the epitopes identified were shared between the two species, whereas others were unique. Differences in epitope recognition were observed not only between the two species, but also within the three batches of equine antivenom. Epitope V, located at the C-terminal region of this protein, is known to be relevant for toxicity and neutralization. Affinity-purified rabbit antibodies specific for this site were able to immunoprecipitate myotoxin II, suggesting that the two copies of epitope V are simultaneously available to antibody binding, which would be compatible with the mode of dimerization known as "conventional" dimer.

摘要

在分子水平上了解毒素的免疫原性,可以为改进抗蛇毒血清提供有价值的信息,同时也有助于了解毒素的结构-功能关系。本研究有两个目的:一是鉴定来自响尾蛇属asper 蛇毒的肌肉毒素 II 的线性 B 细胞表位,它是一种 Lys49 磷脂酶 A₂ 同系物;二是使用针对其毒性中具有功能相关性的表位的特异性抗体,来探测该蛋白在溶液中的二聚体组装模式。使用跨越其完整序列的重叠合成肽文库来鉴定线性 B 细胞表位。使用纯化的肌肉毒素 II 兔抗血清以及三批多价(响尾蛇科)治疗性抗蛇毒血清(用混有asper、simus 和 stenophrys 响尾蛇毒液的混合物免疫马制备)来识别识别表位,通过基于生物素化肽被固定化链霉亲和素捕获的酶免疫测定法来进行。在这两个物种之间鉴定出一些共同的表位,而另一些则是独特的。不仅在两个物种之间,而且在三批马抗蛇毒血清中都观察到了表位识别的差异。位于该蛋白 C 末端区域的表位 V 已知与毒性和中和作用有关。针对该位点的亲和纯化兔抗体能够免疫沉淀肌肉毒素 II,这表明两个拷贝的表位 V 同时可用于抗体结合,这与称为“常规”二聚体的二聚化模式兼容。

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