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在β链受体界面处对噬菌体展示的白细胞介素-2进行分子重塑,以获得具有改善开发特性的强效超激动剂。

Molecular reshaping of phage-displayed Interleukin-2 at beta chain receptor interface to obtain potent super-agonists with improved developability profiles.

机构信息

Center of Molecular Immunology, calle 216 esq 15, apartado 16040, Atabey, Playa, CP 11300, La Habana, Cuba.

Technische Universität Braunschweig, Institute of Biochemistry, Biotechnology and Bioinformatics, Department of Biotechnology, Spielmannstraße 7, 38106, Braunschweig, Germany.

出版信息

Commun Biol. 2023 Aug 9;6(1):828. doi: 10.1038/s42003-023-05188-0.

Abstract

Interleukin-2 (IL-2) engineered versions, with biased immunological functions, have emerged from yeast display and rational design. Here we reshaped the human IL-2 interface with the IL-2 receptor beta chain through the screening of phage-displayed libraries. Multiple beta super-binders were obtained, having increased receptor binding ability and improved developability profiles. Selected variants exhibit an accumulation of negatively charged residues at the interface, which provides a better electrostatic complementarity to the beta chain, and faster association kinetics. These findings point to mechanistic differences with the already reported superkines, characterized by a conformational switch due to the rearrangement of the hydrophobic core. The molecular bases of the favourable developability profile were tracked to a single residue: L92. Recombinant Fc-fusion proteins including our variants are superior to those based on H9 superkine in terms of expression levels in mammalian cells, aggregation resistance, stability, in vivo enhancement of immune effector responses, and anti-tumour effect.

摘要

白细胞介素-2(IL-2)的工程化版本通过酵母展示和合理设计,具有偏向性的免疫功能。在这里,我们通过噬菌体展示文库的筛选,重塑了与人白细胞介素-2 受体β链的相互作用界面。获得了多个具有增强的受体结合能力和改善的可开发性特征的β超级结合物。选定的变体在界面处积累了更多的负电荷残基,这为β链提供了更好的静电互补性和更快的缔合动力学。这些发现表明,与已经报道的超级激动剂具有不同的机制,超级激动剂的特征是由于疏水性核心的重排而导致构象开关。有利的可开发性特征的分子基础可以追溯到单个残基:L92。与基于 H9 超级激动剂的重组 Fc 融合蛋白相比,我们的变体在哺乳动物细胞中的表达水平、聚集抗性、稳定性、体内增强免疫效应细胞反应和抗肿瘤作用方面都具有优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2b1/10412584/45cec1a02778/42003_2023_5188_Fig1_HTML.jpg

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