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首页> 外文期刊>Journal of Immunological Methods >Phage-display derived single-chain fragment variable (scFv) antibodies recognizing conformational epitopes of Escherichia coli heat-labile enterotoxin B-subunit.
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Phage-display derived single-chain fragment variable (scFv) antibodies recognizing conformational epitopes of Escherichia coli heat-labile enterotoxin B-subunit.

机译:噬菌体展示衍生的单链片段可变(scFv)抗体,可识别大肠杆菌热不稳定肠毒素B亚基的构象表位。

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Previously we have described studies on in vitro pentamer assembly of Escherichia coli (E. coli) derived heat-labile enterotoxin B subunit (EtxB) using conventional monoclonal antibodies (Amin et al., JBC 1995: 270, 20143-50 and Chung et al., JBC 2006: 281, 39465-70). To extend these studies further we have used phage-display to select single-chain Fragment variable (scFv) antibodies against different forms of the B-subunit. Two clones exhibiting strong and differential binding were chosen for detailed characterization. A comprehensive sequence analysis was performed to assign the framework and complementary-determining regions and a nonsense mutation present in one of these (scFv-B1.3.9) was corrected. Binding analysis showed that scFv-B1.3.9 bound in ELISA to both heat-denatured monomeric B-subunits (EtxB(1)) and also displayed cross-reactivity towards pentameric EtxB (EtxB(5)), although there was no reactivity towards monoganglioside (G(M1)) captured EtxB(5). Another antibody (scFv-B5.2.14) had a different reactivity profile and, in ELISA, bound only to EtxB(5) but not to EtxB(1) or to EtxB(5) captured via G(M1.) Surprisingly, in competition experiments, the assembled pentameric B-subunit inhibited binding of scFv-B5.2.14 to immobilized EtxB(5) only weakly, whereas reduced, but not oxidized, monomeric EtxB(1) was an efficient competitor. These results clearly demonstrate that B1.3.9 and B5.2.14 have different specificities for cryptic epitopes not accessible in the fully assembled G(M1) bound pentameric form of EtxB. Taken together our results show that we were able to successfully isolate and characterize recombinant scFvs that differentially recognize diverse denatured forms or assembly intermediates of the heat-labile enterotoxin B subunit of E. coli.
机译:先前我们已经描述了使用常规单克隆抗体对大肠杆菌(E. coli)衍生的热不稳定肠毒素B亚单位(EtxB)进行体外五聚体组装的研究(Amin等,JBC 1995:270,20143-50和Chung等(JBC 2006:281,39465-70)。为了进一步扩展这些研究,我们使用了噬菌体展示来选择针对不同形式的B亚基的单链片段可变(scFv)抗体。选择表现出强结合和差异结合的两个克隆用于详细表征。进行了全面的序列分析以分配框架和互补决定区,并纠正了其中一个(scFv-B1.3.9)中存在的无义突变。结合分析表明,scFv-B1.3.9在ELISA中与两个热变性的单体B亚基(EtxB(1))结合,并且对五聚体EtxB(EtxB(5))表现出交叉反应性,尽管对单神经节苷脂没有反应性(G(M1))捕获了EtxB(5)。另一抗体(scFv-B5.2.14)具有不同的反应活性,在ELISA中仅与EtxB(5)结合,而不与EtxB(1)或通过G(M1。)捕获的EtxB(5)结合。实验中,组装的五聚体B亚基仅弱地抑制了scFv-B5.2.14与固定化EtxB(5)的结合,而还原但未氧化的单体EtxB(1)是有效的竞争者。这些结果清楚地表明B1.3.9和B5.2.14对于完全组装的EtxB的G(M1)结合五聚体形式中不可访问的隐秘表位具有不同的特异性。综上所述,我们的结果表明,我们能够成功地分离和鉴定重组scFv,该重组scFv能够差异性识别大肠杆菌的热不稳定肠毒素B亚基的各种变性形式或装配中间体。

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