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利用 NanoBRET 技术对 CXCL 趋化因子受体与荧光趋化因子配体的多元检测

Multiplex Detection of Fluorescent Chemokine Binding to CXC Chemokine Receptors by NanoBRET.

机构信息

Amsterdam Institute of Molecular and Life Sciences, Division of Medicinal Chemistry, Faculty of Science, Vrije Universiteit Amsterdam, De Boelelaan 1083, 1081 HV Amsterdam, The Netherlands.

出版信息

Int J Mol Sci. 2024 May 4;25(9):5018. doi: 10.3390/ijms25095018.

Abstract

NanoLuc-mediated bioluminescence resonance energy transfer (NanoBRET) has gained popularity for its ability to homogenously measure ligand binding to G protein-coupled receptors (GPCRs), including the subfamily of chemokine receptors. These receptors, such as ACKR3, CXCR4, CXCR3, play a crucial role in the regulation of the immune system, are associated with inflammatory diseases and cancer, and are seen as promising drug targets. The aim of this study was to optimize NanoBRET-based ligand binding to NLuc-ACKR3 and NLuc-CXCR4 using different fluorescently labeled chemokine CXCL12 analogs and their use in a multiplex NanoBRET binding assay of two chemokine receptors at the same time. The four fluorescent CXCL12 analogs (CXCL12-AZD488, -AZD546, -AZD594, -AZD647) showed high-affinity saturable binding to both NLuc-ACKR3 and NLuc-CXCR4, with relatively low levels of non-specific binding. Additionally, the binding of all AZDye-labeled CXCL12s to Nluc receptors was inhibited by pharmacologically relevant unlabeled chemokines and small molecules. The NanoBRET binding assay for CXCL10-AZD488 binding to Nluc-CXCR3 was also successfully established and successfully employed for the simultaneous measurement of the binding of unlabeled small molecules to NLuc-CXCR3 and NLuc-CXCR4. In conclusion, multiplexing the NanoBRET-based competition binding assay is a promising tool for testing unlabeled (small) molecules against multiple GPCRs simultaneously.

摘要

纳米萤光素酶介导的生物发光共振能量转移(NanoBRET)因其能够均匀测量配体与 G 蛋白偶联受体(GPCR)的结合而受到关注,包括趋化因子受体亚家族。这些受体,如 ACKR3、CXCR4、CXCR3,在免疫系统的调节中起着关键作用,与炎症性疾病和癌症有关,被认为是有前途的药物靶点。本研究旨在使用不同荧光标记的趋化因子 CXCL12 类似物优化基于 NanoBRET 的配体与 NLuc-ACKR3 和 NLuc-CXCR4 的结合,并将其用于同时测定两种趋化因子受体的多重 NanoBRET 结合测定法。四种荧光 CXCL12 类似物(CXCL12-AZD488、-AZD546、-AZD594、-AZD647)对 NLuc-ACKR3 和 NLuc-CXCR4 均表现出高亲和力饱和结合,而非特异性结合水平相对较低。此外,所有 AZDye 标记的 CXCL12 与 Nluc 受体的结合均被药理学相关的未标记趋化因子和小分子所抑制。还成功建立了用于测定 CXCL10-AZD488 与 Nluc-CXCR3 结合的 NanoBRET 结合测定法,并成功用于同时测定未标记小分子与 NLuc-CXCR3 和 NLuc-CXCR4 的结合。总之,基于 NanoBRET 的竞争结合测定法的多重化是一种同时测试未标记(小分子)与多个 GPCR 相互作用的有前途的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f79c/11084278/15cc46f60d3a/ijms-25-05018-g001.jpg

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