Fraunhofer Institute for Cell Therapy and Immunology (IZI), Branch Bioanalysis and Bioprocesses, Potsdam-Golm, Am Mühlenberg 13, 14476, Potsdam, Germany.
Rudolf-Boehm-Institut für Pharmakologie und Toxikologie, Medizinische Fakultät, Härtelstraße 16-18, 04107, Leipzig, Germany.
Sci Rep. 2017 Jun 16;7(1):3740. doi: 10.1038/s41598-017-03955-8.
Membrane proteins are key elements in cell-mediated processes. In particular, G protein-coupled receptors (GPCRs) have attracted increasing interest since they affect cellular signaling. Furthermore, mutations in GPCRs can cause acquired and inheritable diseases. Up to date, there still exist a number of GPCRs that has not been structurally and functionally analyzed due to difficulties in cell-based membrane protein production. A promising approach for membrane protein synthesis and analysis has emerged during the last years and is known as cell-free protein synthesis (CFPS). Here, we describe a simply portable method to synthesize GPCRs and analyze their ligand-binding properties without the requirement of additional supplements such as liposomes or nanodiscs. This method is based on eukaryotic cell lysates containing translocationally active endogenous endoplasmic reticulum-derived microsomes where the insertion of GPCRs into biologically active membranes is supported. In this study we present CFPS in combination with fast fluorescence-based screening methods to determine the localization, orientation and ligand-binding properties of the endothelin B (ET-B) receptor upon expression in an insect-based cell-free system. To determine the functionality of the cell-free synthesized ET-B receptor, we analyzed the binding of its ligand endothelin-1 (ET-1) in a qualitative fluorescence-based assay and in a quantitative radioligand binding assay.
膜蛋白是细胞介导过程中的关键要素。特别是,G 蛋白偶联受体 (GPCR) 由于它们影响细胞信号转导而引起了越来越多的关注。此外,GPCR 中的突变会导致获得性和遗传性疾病。迄今为止,由于基于细胞的膜蛋白生产存在困难,仍有许多 GPCR 尚未进行结构和功能分析。在过去几年中,出现了一种用于膜蛋白合成和分析的有前途的方法,称为无细胞蛋白合成 (CFPS)。在这里,我们描述了一种简单便携的方法来合成 GPCR 并分析它们的配体结合特性,而无需额外的补充物,如脂质体或纳米盘。该方法基于含有易位活性内源性内质网衍生的微粒体的真核细胞裂解物,其中支持 GPCR 插入具有生物活性的膜中。在这项研究中,我们将 CFPS 与快速荧光基筛选方法相结合,以确定在昆虫无细胞系统中表达时内皮素 B (ET-B) 受体的定位、取向和配体结合特性。为了确定无细胞合成的 ET-B 受体的功能,我们在定性荧光测定和定量放射性配体结合测定中分析了其配体内皮素-1 (ET-1) 的结合。