Abstract

Activation of G protein-coupled receptors (GPCR) leads to the recruitment of beta-arrestins. By tagging the beta-arrestin molecule with a green fluorescent protein, we can visualize the activation of GPCRs in living cells. We have used this approach to de-orphan and study 11 GPCRs for neuropeptide receptors in Drosophila melanogaster. Here we verify the identities of ligands for several recently de-orphaned receptors, including the receptors for the Drosophila neuropeptides proctolin (CG6986), neuropeptide F (CG1147), corazonin (CG10698), dFMRF-amide (CG2114), and allatostatin C (CG7285 and CG13702). We also de-orphan CG6515 and CG7887 by showing these two suspected tachykinin receptor family members respond specifically to a Drosophila tachykinin neuropeptide. Additionally, the translocation assay was used to de-orphan three Drosophila receptors. We show that CG14484, encoding a receptor related to vertebrate bombesin receptors, responds specifically to allatostatin B. Furthermore, the pair of paralogous receptors CG8985 and CG13803 responds specifically to the FMRF-amide-related peptide dromyosuppressin. To corroborate the findings on orphan receptors obtained by the translocation assay, we show that dromyosuppressin also stimulated GTPgammaS binding and inhibited cAMP by CG8985 and CG13803. Together these observations demonstrate the beta-arrestin-green fluorescent protein translocation assay is an important tool in the repertoire of strategies for ligand identification of novel G protein-coupled receptors.

Highlights

  • G protein-coupled receptors form a family of structurally similar transmembrane signaling proteins

  • The ␤arr2-GFP translocation assay has been used effectively and extensively to study diverse G protein-coupled receptors (GPCR) that are sensitive to different peptides and amines (9 –12)

  • It is broadly applicable for GPCR de-orphaning because mammalian receptors that couple to different signaling pathways (12) desensitize by using a common set of GPCR kinases (GRKs) and arrestin proteins

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Summary

Introduction

G protein-coupled receptors form a family of structurally similar transmembrane signaling proteins. HEK-293 cells transiently expressing the proctolin receptor encoded by CG6986 (13) displayed clear translocation of the ␤arr2-GFP to the membrane within 10 min of exposure to 1 ␮M proctolin (Fig. 1, top) but not to any of the other 16 Drosophila neuropeptides (Fig. 1, middle; Table I).

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