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利用生物发光 TNF 超家族(TNFSF)配体融合蛋白分析配体-受体相互作用。

Analysis of Ligand-Receptor Interactions Using Bioluminescent TNF Superfamily (TNFSF) Ligand Fusion Proteins.

机构信息

Division of Molecular Internal Medicine, Department of Internal Medicine II, University Hospital Würzburg, Würzburg, Germany.

出版信息

Methods Mol Biol. 2021;2248:185-200. doi: 10.1007/978-1-0716-1130-2_13.

Abstract

Quantitative analysis of the binding of tumor necrosis factor (TNF) superfamily ligands (TNFLs) to TNF receptor superfamily receptors (TNFRs) is of crucial relevance for the understanding of the mechanisms of TNFR activation. Ligand binding studies are also a basic method required for the development and characterization of agonists and antagonists of TNFRs. TNFL-induced formation of fully active TNFR signaling complexes is a complex process. It involves not only reorganization of monomeric and inactive pre-assembled TNFR complexes into trimeric liganded TNFR complexes but also the secondary interaction of the latter. Moreover, various factors, e.g., TNFR modification, special membrane domains, or accessory proteins, may affect TNFL-TNFR interactions in a TNFR type-specific manner. Widely used cell-free methods for the analysis of protein-protein interactions are thus of limited value for the analysis of TNFL-TNFR interactions and makes therefore in this case cellular binding studies to the method of choice. We and others observed that the genetic fusion of monomeric protein domains to the N-terminus of soluble TNFLs has typically no effect on activity and TNFR binding. We exploited this to generate bioluminescent TNFL fusion proteins which allow simple, sensitive, and highly reproducible cellular binding studies for the investigation of TNFL-TNFR interactions. Here, we report detailed protocols for the production of TNFL fusion proteins with the luciferase of Gaussia princeps and the use of these fusion proteins in various types of cellular binding studies.

摘要

定量分析肿瘤坏死因子(TNF)超家族配体(TNFLs)与 TNF 受体超家族受体(TNFRs)的结合对于理解 TNFR 激活机制至关重要。配体结合研究也是开发和表征 TNFR 激动剂和拮抗剂的基本方法。TNFL 诱导的完全活性 TNFR 信号复合物的形成是一个复杂的过程。它不仅涉及将单体和无活性的预组装 TNFR 复合物重组为三聚体配体结合的 TNFR 复合物,还涉及后者的二次相互作用。此外,各种因素,例如 TNFR 修饰、特殊膜域或辅助蛋白,可能以 TNFR 类型特异性的方式影响 TNFL-TNFR 相互作用。因此,广泛用于分析蛋白质-蛋白质相互作用的无细胞方法对于 TNFL-TNFR 相互作用的分析价值有限,在这种情况下,细胞结合研究是首选方法。我们和其他人观察到,单体蛋白结构域与可溶性 TNFLs 的 N 端融合通常对活性和 TNFR 结合没有影响。我们利用这一点生成了生物发光 TNFL 融合蛋白,这些蛋白允许进行简单、灵敏和高度可重复的细胞结合研究,以研究 TNFL-TNFR 相互作用。在这里,我们报告了详细的生产方案,用于生产与 Gaussia princeps 的荧光素融合的 TNFL 融合蛋白,并在各种类型的细胞结合研究中使用这些融合蛋白。

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