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多种途径可形成抗体重链 CDR3:特异性结合的必要条件,但不充分。

Many Routes to an Antibody Heavy-Chain CDR3: Necessary, Yet Insufficient, for Specific Binding.

机构信息

Specifica Inc., Santa Fe, NM, United States.

Los Alamos National Laboratory, Los Alamos, NM, United States.

出版信息

Front Immunol. 2018 Mar 8;9:395. doi: 10.3389/fimmu.2018.00395. eCollection 2018.

Abstract

Because of its great potential for diversity, the immunoglobulin heavy-chain complementarity-determining region 3 (HCDR3) is taken as an antibody molecule's most important component in conferring binding activity and specificity. For this reason, HCDR3s have been used as unique identifiers to investigate adaptive immune responses and to characterize selection outputs where display systems were employed. Here, we show that many different HCDR3s can be identified within a target-specific antibody population after selection. For each identified HCDR3, a number of different antibodies bearing differences elsewhere can be found. In such populations, all antibodies with the same HCDR3 recognize the target, albeit at different affinities. In contrast, within populations, the majority of antibodies with the same HCDR3 sequence do not bind the target. In one HCDR3 examined in depth, all target-specific antibodies were derived from the same VDJ rearrangement, while non-binding antibodies with the same HCDR3 were derived from many different V and D gene rearrangements. Careful examination of previously published datasets reveals that HCDR3s shared between, and within, different individuals can also originate from rearrangements of different V and D genes, with up to 26 different rearrangements yielding the same identical HCDR3 sequence. On the basis of these observations, we conclude that the same HCDR3 can be generated by many different rearrangements, but that specific target binding is an outcome of unique rearrangements and VL pairing: the HCDR3 is necessary, albeit insufficient, for specific antibody binding.

摘要

由于其具有多样性的巨大潜力,免疫球蛋白重链互补决定区 3(HCDR3)被认为是赋予抗体分子结合活性和特异性的最重要组成部分。出于这个原因,HCDR3 已被用作独特的标识符来研究适应性免疫反应,并描述采用展示系统的选择输出。在这里,我们表明,在选择后,可以在靶向特异性抗体群体中鉴定出许多不同的 HCDR3。对于每个鉴定出的 HCDR3,可以找到具有其他差异的许多不同抗体。在这样的群体中,具有相同 HCDR3 的所有抗体都识别靶标,尽管亲和力不同。相比之下,在 群体中,具有相同 HCDR3 序列的大多数抗体不结合靶标。在一个深入研究的 HCDR3 中,所有靶向特异性抗体都来自相同的 VDJ 重排,而具有相同 HCDR3 的非结合抗体则来自许多不同的 V 和 D 基因重排。对先前发表的 数据集的仔细检查表明,在不同个体之间和内部共享的 HCDR3 也可以源自不同的 V 和 D 基因重排,多达 26 种不同的重排产生相同的相同 HCDR3 序列。基于这些观察结果,我们得出结论,相同的 HCDR3 可以由许多不同的重排产生,但特定的靶标结合是独特重排和 VL 配对的结果:HCDR3 是必要的,尽管不充分,用于特定的抗体结合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ede/5852061/d915f43e79af/fimmu-09-00395-g001.jpg

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