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通过对变体 IgSF 结构域的定向进化产生的新型免疫调节蛋白。

Novel Immunomodulatory Proteins Generated via Directed Evolution of Variant IgSF Domains.

机构信息

Alpine Immune Sciences Inc., Seattle, WA, United States.

Department of Biochemistry, University of Washington, Seattle, WA, United States.

出版信息

Front Immunol. 2020 Jan 21;10:3086. doi: 10.3389/fimmu.2019.03086. eCollection 2019.

Abstract

Immunoglobulin superfamily member (IgSF) proteins play a significant role in regulating immune responses with surface expression on all immune cell subsets, making the IgSF an attractive family of proteins for therapeutic targeting in human diseases. We have developed a directed evolution platform capable of engineering IgSF domains to increase affinities for cognate ligands and/or introduce binding to non-cognate ligands. Using this scientific platform, ICOSL domains have been derived with enhanced binding to ICOS and with additional high-affinity binding to the non-cognate receptor, CD28. Fc-fusion proteins containing these engineered ICOSL domains significantly attenuate T cell activation and and can inhibit development of inflammatory diseases in mouse models. We also present evidence that engineered ICOSL domains can be formatted to selectively provide costimulatory signals to augment T cell responses. Our scientific platform thus provides a system for developing therapeutic protein candidates with selective biological impact for treatments of a wide array of human disorders including cancer and autoimmune/inflammatory diseases.

摘要

免疫球蛋白超家族成员(IgSF)蛋白在调节免疫反应中发挥重要作用,在所有免疫细胞亚群的表面表达,使 IgSF 成为人类疾病治疗靶向的有吸引力的蛋白家族。我们开发了一种定向进化平台,能够对 IgSF 结构域进行工程改造,以增加对同源配体的亲和力和/或引入对非同源配体的结合。使用这个科学平台,已经衍生出了 ICOSL 结构域,这些结构域与 ICOS 的结合增强,并且与非同源受体 CD28 的结合具有更高的亲和力。含有这些工程化 ICOSL 结构域的 Fc 融合蛋白显著减弱 T 细胞的激活,并可抑制炎症性疾病在小鼠模型中的发展。我们还提供了证据表明,工程化的 ICOSL 结构域可以被设计成选择性地提供共刺激信号,以增强 T 细胞的反应。因此,我们的科学平台为开发具有选择性生物学影响的治疗性蛋白候选物提供了一个系统,这些候选物可用于治疗包括癌症和自身免疫/炎症性疾病在内的广泛人类疾病。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc38/6985287/7569bab314fe/fimmu-10-03086-g0001.jpg

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