首页> 外文期刊>Frontiers in Immunology >Bivalent Llama Single-Domain Antibody Fragments against Tumor Necrosis Factor Have Picomolar Potencies due to Intramolecular Interactions
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Bivalent Llama Single-Domain Antibody Fragments against Tumor Necrosis Factor Have Picomolar Potencies due to Intramolecular Interactions

机译:由于肿瘤内分子相互作用,抗肿瘤坏死因子的二价骆马单域抗体片段具有皮摩尔效应。

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The activity of tumor necrosis factor (TNF), a cytokine involved in inflammatory pathologies, can be inhibited by antibodies or trap molecules. Herein, llama-derived variable heavy-chain domains of heavy-chain antibody (VHH, also called Nanobodies?) were generated for the engineering of bivalent constructs, which antagonize the binding of TNF to its receptors with picomolar potencies. Three monomeric VHHs (VHH#1, VHH#2, and VHH#3) were characterized in detail and found to bind TNF with sub-nanomolar affinities. The crystal structures of the TNF–VHH complexes demonstrate that VHH#1 and VHH#2 share the same epitope, at the center of the interaction area of TNF with its TNFRs, while VHH#3 binds to a different, but partially overlapping epitope. These structures rationalize our results obtained with bivalent constructs in which two VHHs were coupled via linkers of different lengths. Contrary to conventional antibodies, these bivalent Nanobody? constructs can bind to a single trimeric TNF, thus binding with avidity and blocking two of the three receptor binding sites in the cytokine. The different mode of binding to antigen and the engineering into bivalent constructs supports the design of highly potent VHH-based therapeutic entities.
机译:肿瘤坏死因子(TNF)(一种参与炎症病理的细胞因子)的活性可以被抗体或捕获分子抑制。在此,产生了来自美洲驼的重链抗体的可变重链结构域(VHH,也称为纳米抗体?),用于二价构建体的工程改造,其以皮摩尔力拮抗TNF与其受体的结合。详细描述了三种单体VHH(VHH#1,VHH#2和VHH#3),发现它们以亚纳摩尔亲和力结合TNF。 TNF-VHH复合物的晶体结构表明,VHH#1和VHH#2在TNF与它的TNFR相互作用区域的中心共享相同的表位,而VHH#3结合到一个不同但部分重叠的表位。这些结构使我们用二价构建体获得的结果合理化,其中两个VHH通过不同长度的接头偶联。与常规抗体相反,这些二价纳米抗体?构建体可以结合单个三聚体TNF,从而以亲和力结合并阻断细胞因子中三个受体结合位点中的两个。与抗原结合的不同模式以及工程化为二价构建体均支持基于VHH的高效治疗实体的设计。

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