Noe Franziska, Geithe Christiane, Fiedler Julia, Krautwurst Dietmar
Leibniz Institute for Food Systems Biology at the Technical University of Munich, D-85354 Freising, Germany.
J Biol Methods. 2017 Dec 15;4(4):e82. doi: 10.14440/jbm.2017.207. eCollection 2017.
The functional cell surface expression of recombinant odorant receptors typically has been investigated by expressing N-terminally extended, "tagged" receptors in test cell systems, using antibody-based immunocytochemistry or flow cytometry, and by measuring odorant/receptor-induced cAMP signaling, mostly by an odorant/receptor-induced and cAMP signaling-dependent transcriptional activation of a luciferase-based luminescence assay. In the present protocol, we explain a method to measure the cell-surface expression and signaling of recombinant odorant receptors carrying a bi-functional, N-terminal 'IL-6-HaloTag'. IL-6, being a secreted cytokine, facilitates functional cell surface expression of recombinant HaloTag-odorant receptors, and the HaloTag protein serves as a highly specific acceptor for cell-impermeant or cell-permeant, fluorophore-coupled ligands, which enable the quantification of odorant receptor expression by antibody-independent, chemical live-cell staining and flow cytometry. Here, we describe how to measure the cell surface expression of recombinant IL-6-HaloTag-odorant receptors in HEK-293 cells or NxG 108CC15 cells, by live-cell staining and flow cytometry, and how to measure an odorant-induced activation of these receptors by the fast, real-time, luminescence-based GloSensor cAMP assay.
重组气味受体的功能性细胞表面表达通常通过在测试细胞系统中表达N端延伸的“标记”受体来研究,使用基于抗体的免疫细胞化学或流式细胞术,并通过测量气味剂/受体诱导的cAMP信号传导,主要是通过基于荧光素酶的发光测定中气味剂/受体诱导的和cAMP信号传导依赖性转录激活来进行。在本方案中,我们解释了一种测量携带双功能N端“IL-6-HaloTag”的重组气味受体的细胞表面表达和信号传导的方法。IL-6作为一种分泌的细胞因子,促进重组HaloTag-气味受体的功能性细胞表面表达,并且HaloTag蛋白作为细胞不可渗透或细胞可渗透的荧光团偶联配体的高度特异性受体,这使得能够通过独立于抗体的化学活细胞染色和流式细胞术对气味受体表达进行定量。在这里,我们描述了如何通过活细胞染色和流式细胞术测量HEK-293细胞或NxG 108CC15细胞中重组IL-6-HaloTag-气味受体的细胞表面表达,以及如何通过基于快速、实时发光的GloSensor cAMP测定来测量这些受体的气味剂诱导的激活。