Cargando…

A Dynamic, Split-Luciferase-Based Mini-G Protein Sensor to Functionally Characterize Ligands at All Four Histamine Receptor Subtypes

In drug discovery, assays with proximal readout are of great importance to study target-specific effects of potential drug candidates. In the field of G protein-coupled receptors (GPCRs), the determination of GPCR-G protein interactions and G protein activation by means of radiolabeled GTP analogs (...

Descripción completa

Detalles Bibliográficos
Autores principales: Höring, Carina, Seibel, Ulla, Tropmann, Katharina, Grätz, Lukas, Mönnich, Denise, Pitzl, Sebastian, Bernhardt, Günther, Pockes, Steffen, Strasser, Andrea
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7698210/
https://www.ncbi.nlm.nih.gov/pubmed/33182741
http://dx.doi.org/10.3390/ijms21228440
_version_ 1783615777747763200
author Höring, Carina
Seibel, Ulla
Tropmann, Katharina
Grätz, Lukas
Mönnich, Denise
Pitzl, Sebastian
Bernhardt, Günther
Pockes, Steffen
Strasser, Andrea
author_facet Höring, Carina
Seibel, Ulla
Tropmann, Katharina
Grätz, Lukas
Mönnich, Denise
Pitzl, Sebastian
Bernhardt, Günther
Pockes, Steffen
Strasser, Andrea
author_sort Höring, Carina
collection PubMed
description In drug discovery, assays with proximal readout are of great importance to study target-specific effects of potential drug candidates. In the field of G protein-coupled receptors (GPCRs), the determination of GPCR-G protein interactions and G protein activation by means of radiolabeled GTP analogs ([(35)S]GTPγS, [γ-(32)P]GTP) has widely been used for this purpose. Since we were repeatedly faced with insufficient quality of radiolabeled nucleotides, there was a requirement to implement a novel proximal functional assay for the routine characterization of putative histamine receptor ligands. We applied the split-NanoLuc to the four histamine receptor subtypes (H(1)R, H(2)R, H(3)R, H(4)R) and recently engineered minimal G (mini-G) proteins. Using this method, the functional response upon receptor activation was monitored in real-time and the four mini-G sensors were evaluated by investigating selected standard (inverse) agonists and antagonists. All potencies and efficacies of the studied ligands were in concordance with literature data. Further, we demonstrated a significant positive correlation of the signal amplitude and the mini-G protein expression level in the case of the H(2)R, but not for the H(1)R or the H(3)R. The pEC(50) values of histamine obtained under different mini-G expression levels were consistent. Moreover, we obtained excellent dynamic ranges (Z’ factor) and the signal spans were improved for all receptor subtypes in comparison to the previously performed [(35)S]GTPγS binding assay.
format Online
Article
Text
id pubmed-7698210
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-76982102020-11-29 A Dynamic, Split-Luciferase-Based Mini-G Protein Sensor to Functionally Characterize Ligands at All Four Histamine Receptor Subtypes Höring, Carina Seibel, Ulla Tropmann, Katharina Grätz, Lukas Mönnich, Denise Pitzl, Sebastian Bernhardt, Günther Pockes, Steffen Strasser, Andrea Int J Mol Sci Article In drug discovery, assays with proximal readout are of great importance to study target-specific effects of potential drug candidates. In the field of G protein-coupled receptors (GPCRs), the determination of GPCR-G protein interactions and G protein activation by means of radiolabeled GTP analogs ([(35)S]GTPγS, [γ-(32)P]GTP) has widely been used for this purpose. Since we were repeatedly faced with insufficient quality of radiolabeled nucleotides, there was a requirement to implement a novel proximal functional assay for the routine characterization of putative histamine receptor ligands. We applied the split-NanoLuc to the four histamine receptor subtypes (H(1)R, H(2)R, H(3)R, H(4)R) and recently engineered minimal G (mini-G) proteins. Using this method, the functional response upon receptor activation was monitored in real-time and the four mini-G sensors were evaluated by investigating selected standard (inverse) agonists and antagonists. All potencies and efficacies of the studied ligands were in concordance with literature data. Further, we demonstrated a significant positive correlation of the signal amplitude and the mini-G protein expression level in the case of the H(2)R, but not for the H(1)R or the H(3)R. The pEC(50) values of histamine obtained under different mini-G expression levels were consistent. Moreover, we obtained excellent dynamic ranges (Z’ factor) and the signal spans were improved for all receptor subtypes in comparison to the previously performed [(35)S]GTPγS binding assay. MDPI 2020-11-10 /pmc/articles/PMC7698210/ /pubmed/33182741 http://dx.doi.org/10.3390/ijms21228440 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Höring, Carina
Seibel, Ulla
Tropmann, Katharina
Grätz, Lukas
Mönnich, Denise
Pitzl, Sebastian
Bernhardt, Günther
Pockes, Steffen
Strasser, Andrea
A Dynamic, Split-Luciferase-Based Mini-G Protein Sensor to Functionally Characterize Ligands at All Four Histamine Receptor Subtypes
title A Dynamic, Split-Luciferase-Based Mini-G Protein Sensor to Functionally Characterize Ligands at All Four Histamine Receptor Subtypes
title_full A Dynamic, Split-Luciferase-Based Mini-G Protein Sensor to Functionally Characterize Ligands at All Four Histamine Receptor Subtypes
title_fullStr A Dynamic, Split-Luciferase-Based Mini-G Protein Sensor to Functionally Characterize Ligands at All Four Histamine Receptor Subtypes
title_full_unstemmed A Dynamic, Split-Luciferase-Based Mini-G Protein Sensor to Functionally Characterize Ligands at All Four Histamine Receptor Subtypes
title_short A Dynamic, Split-Luciferase-Based Mini-G Protein Sensor to Functionally Characterize Ligands at All Four Histamine Receptor Subtypes
title_sort dynamic, split-luciferase-based mini-g protein sensor to functionally characterize ligands at all four histamine receptor subtypes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7698210/
https://www.ncbi.nlm.nih.gov/pubmed/33182741
http://dx.doi.org/10.3390/ijms21228440
work_keys_str_mv AT horingcarina adynamicsplitluciferasebasedminigproteinsensortofunctionallycharacterizeligandsatallfourhistaminereceptorsubtypes
AT seibelulla adynamicsplitluciferasebasedminigproteinsensortofunctionallycharacterizeligandsatallfourhistaminereceptorsubtypes
AT tropmannkatharina adynamicsplitluciferasebasedminigproteinsensortofunctionallycharacterizeligandsatallfourhistaminereceptorsubtypes
AT gratzlukas adynamicsplitluciferasebasedminigproteinsensortofunctionallycharacterizeligandsatallfourhistaminereceptorsubtypes
AT monnichdenise adynamicsplitluciferasebasedminigproteinsensortofunctionallycharacterizeligandsatallfourhistaminereceptorsubtypes
AT pitzlsebastian adynamicsplitluciferasebasedminigproteinsensortofunctionallycharacterizeligandsatallfourhistaminereceptorsubtypes
AT bernhardtgunther adynamicsplitluciferasebasedminigproteinsensortofunctionallycharacterizeligandsatallfourhistaminereceptorsubtypes
AT pockessteffen adynamicsplitluciferasebasedminigproteinsensortofunctionallycharacterizeligandsatallfourhistaminereceptorsubtypes
AT strasserandrea adynamicsplitluciferasebasedminigproteinsensortofunctionallycharacterizeligandsatallfourhistaminereceptorsubtypes
AT horingcarina dynamicsplitluciferasebasedminigproteinsensortofunctionallycharacterizeligandsatallfourhistaminereceptorsubtypes
AT seibelulla dynamicsplitluciferasebasedminigproteinsensortofunctionallycharacterizeligandsatallfourhistaminereceptorsubtypes
AT tropmannkatharina dynamicsplitluciferasebasedminigproteinsensortofunctionallycharacterizeligandsatallfourhistaminereceptorsubtypes
AT gratzlukas dynamicsplitluciferasebasedminigproteinsensortofunctionallycharacterizeligandsatallfourhistaminereceptorsubtypes
AT monnichdenise dynamicsplitluciferasebasedminigproteinsensortofunctionallycharacterizeligandsatallfourhistaminereceptorsubtypes
AT pitzlsebastian dynamicsplitluciferasebasedminigproteinsensortofunctionallycharacterizeligandsatallfourhistaminereceptorsubtypes
AT bernhardtgunther dynamicsplitluciferasebasedminigproteinsensortofunctionallycharacterizeligandsatallfourhistaminereceptorsubtypes
AT pockessteffen dynamicsplitluciferasebasedminigproteinsensortofunctionallycharacterizeligandsatallfourhistaminereceptorsubtypes
AT strasserandrea dynamicsplitluciferasebasedminigproteinsensortofunctionallycharacterizeligandsatallfourhistaminereceptorsubtypes