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抗体稳定性与 Vκ CDR-L3 典型结构的协同进化。

Coevolution of antibody stability and Vκ CDR-L3 canonical structure.

机构信息

Centocor Research and Development, Inc., Radnor, PA 19087, USA.

出版信息

J Mol Biol. 2010 Oct 1;402(4):708-19. doi: 10.1016/j.jmb.2010.08.009. Epub 2010 Aug 18.

Abstract

Antibodies recognize antigens through six hypervariable loops, five of which have a limited set of conformations known as canonical structures. For κ light chains, the majority of CDR-L3 [the third hypervariable loop of the light chain variable domain (V(L))] adopts the type 1 canonical structure (CS1), with a cis-proline at position 95. Here, we present the design and structural studies of the monoclonal antibody mAb15 and related mutants that contained a series of progressively germline mutations only in the heavy chain variable domain (V(H)) that ultimately led to an increase of more than 11°C in the melting temperature (T(m)) of the antigen-binding fragment (Fab). The all-trans CDR-L3 structure in the wild type is significantly different from any known CDR-L3 canonical structures. In the thermally stable mutants, the L94(L)-S95(L) peptide bond adopts an energetically unfavorable non-X-proline cis conformation, but the overall CDR-L3 loop converted to CS1. The stabilized V(H) appears to function as a specific molecular chaperone that facilitated the trans-cis isomerization of S95(L). Thus, it is plausible that proline is the evolutionary choice to maintain overall structure and stability for V(L). These results provide new insights into the evolution of CS1 and suggest a potential molecular switch mechanism at position 95 that links CDR-L3 structural diversity and antibody stability and will have implications for antibody engineering.

摘要

抗体通过六个高变环识别抗原,其中五个具有有限的构象集,称为典型结构。对于 κ 轻链,大多数 CDR-L3[轻链可变域(V(L))的第三个高变环]采用 1 型典型结构(CS1),第 95 位为顺式脯氨酸。在这里,我们介绍了单克隆抗体 mAb15 及其相关突变体的设计和结构研究,这些突变体仅在重链可变域(V(H))中含有一系列逐渐接近种系的突变,最终导致抗原结合片段(Fab)的熔点(T(m))升高超过 11°C。野生型的全反式 CDR-L3 结构与任何已知的 CDR-L3 典型结构明显不同。在热稳定突变体中,L94(L)-S95(L)肽键采用能量不利的非 X-脯氨酸顺式构象,但整个 CDR-L3 环转换为 CS1。稳定的 V(H)似乎充当特定的分子伴侣,促进 S95(L)的反式顺式异构化。因此,脯氨酸可能是维持 V(L)整体结构和稳定性的进化选择。这些结果为 CS1 的进化提供了新的见解,并提出了 95 位处连接 CDR-L3 结构多样性和抗体稳定性的潜在分子开关机制,这将对抗体工程产生影响。

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