Cargando…

Monitoring β-arrestin recruitment via β-lactamase enzyme fragment complementation: purification of peptide E as a low-affinity ligand for mammalian bombesin receptors

Identification of cognate ligands for G protein-coupled receptors (GPCRs) provides a starting point for understanding novel regulatory mechanisms. Although GPCR ligands have typically been evaluated through the activation of heterotrimeric G proteins, recent studies have shown that GPCRs signal not...

Descripción completa

Detalles Bibliográficos
Autores principales: Ikeda, Yuichi, Kumagai, Hidetoshi, Okazaki, Hiroaki, Fujishiro, Mitsuhiro, Motozawa, Yoshihiro, Nomura, Seitaro, Takeda, Norifumi, Toko, Haruhiro, Takimoto, Eiki, Akazawa, Hiroshi, Morita, Hiroyuki, Suzuki, Jun-ichi, Yamazaki, Tsutomu, Komuro, Issei, Yanagisawa, Masashi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4452343/
https://www.ncbi.nlm.nih.gov/pubmed/26030739
http://dx.doi.org/10.1371/journal.pone.0127445
_version_ 1782374293629304832
author Ikeda, Yuichi
Kumagai, Hidetoshi
Okazaki, Hiroaki
Fujishiro, Mitsuhiro
Motozawa, Yoshihiro
Nomura, Seitaro
Takeda, Norifumi
Toko, Haruhiro
Takimoto, Eiki
Akazawa, Hiroshi
Morita, Hiroyuki
Suzuki, Jun-ichi
Yamazaki, Tsutomu
Komuro, Issei
Yanagisawa, Masashi
author_facet Ikeda, Yuichi
Kumagai, Hidetoshi
Okazaki, Hiroaki
Fujishiro, Mitsuhiro
Motozawa, Yoshihiro
Nomura, Seitaro
Takeda, Norifumi
Toko, Haruhiro
Takimoto, Eiki
Akazawa, Hiroshi
Morita, Hiroyuki
Suzuki, Jun-ichi
Yamazaki, Tsutomu
Komuro, Issei
Yanagisawa, Masashi
author_sort Ikeda, Yuichi
collection PubMed
description Identification of cognate ligands for G protein-coupled receptors (GPCRs) provides a starting point for understanding novel regulatory mechanisms. Although GPCR ligands have typically been evaluated through the activation of heterotrimeric G proteins, recent studies have shown that GPCRs signal not only through G proteins but also through β-arrestins. As such, monitoring β-arrestin signaling instead of G protein signaling will increase the likelihood of identifying currently unknown ligands, including β-arrestin-biased agonists. Here, we developed a cell-based assay for monitoring ligand-dependent GPCR-β-arrestin interaction via β-lactamase enzyme fragment complementation. Inter alia, β-lactamase is a superior reporter enzyme because of its cell-permeable fluorescent substrate. This substrate makes the assay non-destructive and compatible with fluorescence-activated cell sorting (FACS). In a reporter cell, complementary fragments of β-lactamase (α and ω) were fused to β-arrestin 2 and GPCR, respectively. Ligand stimulation initiated the interaction of these chimeric proteins (β-arrestin-α and GPCR-ω), and this inducible interaction was measured through reconstituted β-lactamase activity. Utilizing this system, we screened various mammalian tissue extracts for agonistic activities on human bombesin receptor subtype 3 (hBRS3). We purified peptide E as a low-affinity ligand for hBRS3, which was also found to be an agonist for the other two mammalian bombesin receptors such as gastrin-releasing peptide receptor (GRPR) and neuromedin B receptor (NMBR). Successful purification of peptide E has validated the robustness of this assay. We conclude that our newly developed system will facilitate the discovery of GPCR ligands.
format Online
Article
Text
id pubmed-4452343
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-44523432015-06-09 Monitoring β-arrestin recruitment via β-lactamase enzyme fragment complementation: purification of peptide E as a low-affinity ligand for mammalian bombesin receptors Ikeda, Yuichi Kumagai, Hidetoshi Okazaki, Hiroaki Fujishiro, Mitsuhiro Motozawa, Yoshihiro Nomura, Seitaro Takeda, Norifumi Toko, Haruhiro Takimoto, Eiki Akazawa, Hiroshi Morita, Hiroyuki Suzuki, Jun-ichi Yamazaki, Tsutomu Komuro, Issei Yanagisawa, Masashi PLoS One Research Article Identification of cognate ligands for G protein-coupled receptors (GPCRs) provides a starting point for understanding novel regulatory mechanisms. Although GPCR ligands have typically been evaluated through the activation of heterotrimeric G proteins, recent studies have shown that GPCRs signal not only through G proteins but also through β-arrestins. As such, monitoring β-arrestin signaling instead of G protein signaling will increase the likelihood of identifying currently unknown ligands, including β-arrestin-biased agonists. Here, we developed a cell-based assay for monitoring ligand-dependent GPCR-β-arrestin interaction via β-lactamase enzyme fragment complementation. Inter alia, β-lactamase is a superior reporter enzyme because of its cell-permeable fluorescent substrate. This substrate makes the assay non-destructive and compatible with fluorescence-activated cell sorting (FACS). In a reporter cell, complementary fragments of β-lactamase (α and ω) were fused to β-arrestin 2 and GPCR, respectively. Ligand stimulation initiated the interaction of these chimeric proteins (β-arrestin-α and GPCR-ω), and this inducible interaction was measured through reconstituted β-lactamase activity. Utilizing this system, we screened various mammalian tissue extracts for agonistic activities on human bombesin receptor subtype 3 (hBRS3). We purified peptide E as a low-affinity ligand for hBRS3, which was also found to be an agonist for the other two mammalian bombesin receptors such as gastrin-releasing peptide receptor (GRPR) and neuromedin B receptor (NMBR). Successful purification of peptide E has validated the robustness of this assay. We conclude that our newly developed system will facilitate the discovery of GPCR ligands. Public Library of Science 2015-06-01 /pmc/articles/PMC4452343/ /pubmed/26030739 http://dx.doi.org/10.1371/journal.pone.0127445 Text en © 2015 Ikeda et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Ikeda, Yuichi
Kumagai, Hidetoshi
Okazaki, Hiroaki
Fujishiro, Mitsuhiro
Motozawa, Yoshihiro
Nomura, Seitaro
Takeda, Norifumi
Toko, Haruhiro
Takimoto, Eiki
Akazawa, Hiroshi
Morita, Hiroyuki
Suzuki, Jun-ichi
Yamazaki, Tsutomu
Komuro, Issei
Yanagisawa, Masashi
Monitoring β-arrestin recruitment via β-lactamase enzyme fragment complementation: purification of peptide E as a low-affinity ligand for mammalian bombesin receptors
title Monitoring β-arrestin recruitment via β-lactamase enzyme fragment complementation: purification of peptide E as a low-affinity ligand for mammalian bombesin receptors
title_full Monitoring β-arrestin recruitment via β-lactamase enzyme fragment complementation: purification of peptide E as a low-affinity ligand for mammalian bombesin receptors
title_fullStr Monitoring β-arrestin recruitment via β-lactamase enzyme fragment complementation: purification of peptide E as a low-affinity ligand for mammalian bombesin receptors
title_full_unstemmed Monitoring β-arrestin recruitment via β-lactamase enzyme fragment complementation: purification of peptide E as a low-affinity ligand for mammalian bombesin receptors
title_short Monitoring β-arrestin recruitment via β-lactamase enzyme fragment complementation: purification of peptide E as a low-affinity ligand for mammalian bombesin receptors
title_sort monitoring β-arrestin recruitment via β-lactamase enzyme fragment complementation: purification of peptide e as a low-affinity ligand for mammalian bombesin receptors
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4452343/
https://www.ncbi.nlm.nih.gov/pubmed/26030739
http://dx.doi.org/10.1371/journal.pone.0127445
work_keys_str_mv AT ikedayuichi monitoringbarrestinrecruitmentviablactamaseenzymefragmentcomplementationpurificationofpeptideeasalowaffinityligandformammalianbombesinreceptors
AT kumagaihidetoshi monitoringbarrestinrecruitmentviablactamaseenzymefragmentcomplementationpurificationofpeptideeasalowaffinityligandformammalianbombesinreceptors
AT okazakihiroaki monitoringbarrestinrecruitmentviablactamaseenzymefragmentcomplementationpurificationofpeptideeasalowaffinityligandformammalianbombesinreceptors
AT fujishiromitsuhiro monitoringbarrestinrecruitmentviablactamaseenzymefragmentcomplementationpurificationofpeptideeasalowaffinityligandformammalianbombesinreceptors
AT motozawayoshihiro monitoringbarrestinrecruitmentviablactamaseenzymefragmentcomplementationpurificationofpeptideeasalowaffinityligandformammalianbombesinreceptors
AT nomuraseitaro monitoringbarrestinrecruitmentviablactamaseenzymefragmentcomplementationpurificationofpeptideeasalowaffinityligandformammalianbombesinreceptors
AT takedanorifumi monitoringbarrestinrecruitmentviablactamaseenzymefragmentcomplementationpurificationofpeptideeasalowaffinityligandformammalianbombesinreceptors
AT tokoharuhiro monitoringbarrestinrecruitmentviablactamaseenzymefragmentcomplementationpurificationofpeptideeasalowaffinityligandformammalianbombesinreceptors
AT takimotoeiki monitoringbarrestinrecruitmentviablactamaseenzymefragmentcomplementationpurificationofpeptideeasalowaffinityligandformammalianbombesinreceptors
AT akazawahiroshi monitoringbarrestinrecruitmentviablactamaseenzymefragmentcomplementationpurificationofpeptideeasalowaffinityligandformammalianbombesinreceptors
AT moritahiroyuki monitoringbarrestinrecruitmentviablactamaseenzymefragmentcomplementationpurificationofpeptideeasalowaffinityligandformammalianbombesinreceptors
AT suzukijunichi monitoringbarrestinrecruitmentviablactamaseenzymefragmentcomplementationpurificationofpeptideeasalowaffinityligandformammalianbombesinreceptors
AT yamazakitsutomu monitoringbarrestinrecruitmentviablactamaseenzymefragmentcomplementationpurificationofpeptideeasalowaffinityligandformammalianbombesinreceptors
AT komuroissei monitoringbarrestinrecruitmentviablactamaseenzymefragmentcomplementationpurificationofpeptideeasalowaffinityligandformammalianbombesinreceptors
AT yanagisawamasashi monitoringbarrestinrecruitmentviablactamaseenzymefragmentcomplementationpurificationofpeptideeasalowaffinityligandformammalianbombesinreceptors