首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Genetically-encoded Molecular Probes to Study G Protein-coupled Receptors
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Genetically-encoded Molecular Probes to Study G Protein-coupled Receptors

机译:基因编码的分子探针用于研究G蛋白偶联受体

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摘要

To facilitate structural and dynamic studies of G protein-coupled receptor (GPCR) signaling complexes, new approaches are required to introduce informative probes or labels into expressed receptors that do not perturb receptor function. We used amber codon suppression technology to genetically-encode the unnatural amino acid, p-azido-L-phenylalanine (azF) at various targeted positions in GPCRs heterologously expressed in mammalian cells. The versatility of the azido group is illustrated here in different applications to study GPCRs in their native cellular environment or under detergent solubilized conditions. First, we demonstrate a cell-based targeted photocrosslinking technology to identify the residues in the ligand-binding pocket of GPCR where a tritium-labeled small-molecule ligand is crosslinked to a genetically-encoded azido amino acid. We then demonstrate site-specific modification of GPCRs by the bioorthogonal Staudinger-Bertozzi ligation reaction that targets the azido group using phosphine derivatives. We discuss a general strategy for targeted peptide-epitope tagging of expressed membrane proteins in-culture and its detection using a whole-cell-based ELISA approach. Finally, we show that azF-GPCRs can be selectively tagged with fluorescent probes. The methodologies discussed are general, in that they can in principle be applied to any amino acid position in any expressed GPCR to interrogate active signaling complexes.
机译:为了促进G蛋白偶联受体(GPCR)信号复合物的结构和动态研究,需要新的方法将信息探针或标记物引入表达的受体中,而不会干扰受体功能。我们使用琥珀色密码子抑制技术对哺乳动物细胞中异源表达的GPCR中的各个目标位置的非天然氨基酸p-叠氮基-L-苯丙氨酸(azF)进行了基因编码。叠氮基团的多功能性在不同的应用中进行了说明,以研究其天然细胞环境中或在去污剂溶解条件下的GPCR。首先,我们展示了一种基于细胞的靶向光交联技术,以鉴定GPCR配体结合袋中的残基,其中where标记的小分子配体与遗传编码的叠氮基氨基酸交联。然后,我们通过使用膦衍生物靶向叠氮基的生物正交Staudinger-Bertozzi连接反应证明了GPCR的位点特异性修饰。我们讨论了在培养中表达的膜蛋白的靶向肽表位标记的一般策略,以及使用基于全细胞的ELISA方法对其进行检测的方法。最后,我们显示可以用荧光探针选择性标记azF-GPCR。所讨论的方法是通用的,因为它们原则上可以应用于任何表达的GPCR中的任何氨基酸位置,以询问活性信号复合物。

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