Monoclonal Antibody 5F1 Modulates Formyl Peptide Receptor 1 Conformation for Transmembrane Signaling

IF 2 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Yue Wang, Yezhou Liu, Yixin Chang, Richard D. Ye
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Abstract

Formyl peptide receptor 1 (FPR1) is a G protein-coupled receptor (GPCR) that mediates chemotaxis and bactericidal activities in phagocytes. The monoclonal antibody 5F1 is generated against full-length FPR1 and used widely for detection of FPR1 expression. This study aimed to characterize 5F1 for its functions. We found that 5F1 is highly selective for human FPR1 over the homologous FPR2. Epitope mapping led to the identification of extracellular loop 2 (ECL2) as a major epitope, and the synthetic peptide of ECL2 interfered with 5F1 binding to FPR1. Using a NanoLuc Bioluminescence Resonance Energy Transfer approach, we found that 5F1 binding induced FPR1 conformational changes. Although less potent than fMLF, 5F1 binding induced FPR1 internalization, Gi protein dissociation, and β-arrestins membrane translocation. Alanine substitution of F110 and R205 markedly reduced 5F1 binding without affecting FPR1 cell surface expression, suggesting that 5F1 is sensitive to conformational changes in FPR1 as these residues are not present in ECL2. Altogether, mAb 5F1 can alter FPR1 conformation and modulate transmembrane signaling, features that may be explored for potential use beyond the detection of FPR1 expression.

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单克隆抗体5F1调节甲酰基肽受体1的跨膜信号构象
甲酰基肽受体1 (FPR1)是一种介导吞噬细胞趋化和杀菌活性的G蛋白偶联受体(GPCR)。单克隆抗体5F1是针对全长FPR1产生的,广泛用于检测FPR1的表达。本研究旨在表征5F1的功能。我们发现5F1对人类FPR1具有高度选择性,而不是同源的FPR2。表位定位导致细胞外环2 (ECL2)被鉴定为主要表位,ECL2的合成肽干扰5F1与FPR1的结合。利用纳米荧光生物发光共振能量转移方法,我们发现5F1结合诱导FPR1构象变化。5F1结合虽然不如fMLF有效,但诱导了FPR1内化、Gi蛋白解离和β-阻滞蛋白膜易位。F110和R205的丙氨酸替代显著降低了5F1的结合,而不影响FPR1细胞表面的表达,这表明5F1对FPR1的构象变化很敏感,因为这些残基不存在于ECL2中。总之,mAb 5F1可以改变FPR1构象并调节跨膜信号传导,这些特征可能会被探索用于检测FPR1表达之外的潜在用途。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
FASEB bioAdvances
FASEB bioAdvances Multiple-
CiteScore
5.40
自引率
3.70%
发文量
56
审稿时长
10 weeks
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