首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Atypical Antigen Recognition Mode of a Shark Immunoglobulin New Antigen Receptor (IgNAR) Variable Domain Characterized by Humanization and Structural Analysis
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Atypical Antigen Recognition Mode of a Shark Immunoglobulin New Antigen Receptor (IgNAR) Variable Domain Characterized by Humanization and Structural Analysis

机译:鲨鱼免疫球蛋白新抗原受体(IgNAR)可变域的非典型抗原识别模式的人性化和结构分析

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摘要

The immunoglobulin new antigen receptors (IgNARs) are a class of Ig-like molecules of the shark immune system that exist as heavy chain-only homodimers and bind antigens by their single domain variable regions (V-NARs). Following shark immunization and/or in vitro selection, V-NARs can be generated as soluble, stable, and specific high affinity monomeric binding proteins of ∼12 kDa. We have previously isolated a V-NAR from an immunized spiny dogfish shark, named E06, that binds specifically and with high affinity to human, mouse, and rat serum albumins. Humanization of E06 was carried out by converting over 60% of non-complementarity-determining region residues to those of a human germ line Vκ1 sequence, DPK9. The resulting huE06 molecules have largely retained the specificity and affinity of antigen binding of the parental V-NAR. Crystal structures of the shark E06 and its humanized variant (huE06 v1.1) in complex with human serum albumin (HSA) were determined at 3- and 2.3-Å resolution, respectively. The huE06 v1.1 molecule retained all but one amino acid residues involved in the binding site for HSA. Structural analysis of these V-NARs has revealed an unusual variable domain-antigen interaction. E06 interacts with HSA in an atypical mode that utilizes extensive framework contacts in addition to complementarity-determining regions that has not been seen previously in V-NARs. On the basis of the structure, the roles of various elements of the molecule are described with respect to antigen binding and V-NAR stability. This information broadens the general understanding of antigen recognition and provides a framework for further design and humanization of shark IgNARs.
机译:免疫球蛋白新抗原受体(IgNAR)是鲨鱼免疫系统的一类Ig样分子,以仅重链的同型二聚体形式存在,并通过其单结构域可变区(V-NAR)结合抗原。鲨鱼免疫接种和/或体外选择后,V-NAR可以作为可溶性,稳定且特异性的高亲和力单体结合蛋白(约12 kDa)生成。我们以前已经从免疫的多刺dog鱼鲨鱼中分离出V-NAR,命名为E06,该鲨鱼与人,小鼠和大鼠的血清白蛋白特异性结合并具有高亲和力。 E06的人源化是通过将超过60%的非互补决定区残基转化为人类种系Vκ1序列DPK9的残基来实现的。所得的huE06分子在很大程度上保留了亲代V-NAR的抗原结合的特异性和亲和力。鲨鱼E06及其人源化变体(huE06 v1.1)与人血清白蛋白(HSA)形成复合物的晶体结构分别在3-和2.3-Å分辨率下测定。 huE06 v1.1分子保留了除HSA结合位点外的所有一个氨基酸残基。这些V-NARs的结构分析显示异常的可变域-抗原相互作用。 E06以非典型模式与HSA相互作用,该模式除了在V-NAR中以前没有发现的互补决定区以外,还利用广泛的框架接触。根据结构,就抗原结合和V-NAR稳定性描述了分子中各种元素的作用。该信息拓宽了对抗原识别的一般理解,并为进一步设计和人源化鲨鱼IgNAR提供了框架。

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