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通过体细胞超突变和细胞表面展示定向进化血管生成素-2 配体陷阱。

Directed evolution of an angiopoietin-2 ligand trap by somatic hypermutation and cell surface display.

机构信息

From the Departments of Cardiovascular Sciences and Biochemistry, University of Leicester, Leicester LE1 9HN, United Kingdom.

出版信息

J Biol Chem. 2013 Nov 15;288(46):33205-12. doi: 10.1074/jbc.M113.510578. Epub 2013 Oct 8.

Abstract

Tie2 is a receptor tyrosine kinase that is essential for the development and maintenance of blood vessels through binding the soluble ligands angiopoietin 1 (Ang1) and 2 (Ang2). Ang1 is constitutively produced by perivascular cells and is protective of the adult vasculature. Ang2 plays an important role in blood vessel formation and is normally expressed during development. However, its re-expression in disease states, including cancer and sepsis, results in destabilization of blood vessels contributing to the pathology of these conditions. Ang2 is thus an attractive therapeutic target. Here we report the directed evolution of a ligand trap for Ang2 by harnessing the B cell somatic hypermutation machinery and coupling this to selectable cell surface display of a Tie2 ectodomain. Directed evolution produced an unexpected combination of mutations resulting in loss of Ang1 binding but maintenance of Ang2 binding. A soluble form of the evolved ectodomain binds Ang2 but not Ang1. Furthermore, the soluble evolved ectodomain blocks Ang2 effects on endothelial cells without interfering with Ang1 activity. Our study has created a novel Ang2 ligand trap and provided proof of concept for combining surface display and exogenous gene diversification in B cells for evolution of a non-immunoglobulin target.

摘要

Tie2 是一种受体酪氨酸激酶,通过结合可溶性配体血管生成素 1(Ang1)和 2(Ang2),对于血管的发育和维持至关重要。Ang1 由血管周围细胞持续产生,对成年血管具有保护作用。Ang2 在血管形成中起重要作用,在发育过程中正常表达。然而,在包括癌症和败血症在内的疾病状态下重新表达会导致血管不稳定,从而导致这些疾病的病理发生。因此,Ang2 是一个有吸引力的治疗靶点。在这里,我们通过利用 B 细胞体细胞高频突变机制并将其与 Tie2 胞外结构域的可选择细胞表面展示相耦合,报告了一种针对 Ang2 的配体陷阱的定向进化。定向进化产生了意想不到的突变组合,导致 Ang1 结合丧失,但保留了 Ang2 结合。进化的胞外结构域的可溶性形式结合 Ang2 但不结合 Ang1。此外,可溶性进化的胞外结构域阻断 Ang2 对内皮细胞的作用,而不干扰 Ang1 的活性。我们的研究创造了一种新型的 Ang2 配体陷阱,并为结合表面展示和 B 细胞中外源基因多样化用于非免疫球蛋白靶标的进化提供了概念验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/278c/3829167/b5862d70b034/zbc0511368300001.jpg

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