Cargando…

TRAPing Ghrelin-Activated Circuits: A Novel Tool to Identify, Target and Control Hormone-Responsive Populations in TRAP2 Mice

The availability of Cre-based mouse lines for visualizing and targeting populations of hormone-sensitive cells has helped identify the neural circuitry driving hormone effects. However, these mice have limitations and may not even be available. For instance, the development of the first ghrelin rece...

Descripción completa

Detalles Bibliográficos
Autores principales: Stoltenborg, Iris, Peris-Sampedro, Fiona, Schéle, Erik, Le May, Marie V., Adan, Roger A. H., Dickson, Suzanne L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8745172/
https://www.ncbi.nlm.nih.gov/pubmed/35008985
http://dx.doi.org/10.3390/ijms23010559
_version_ 1784630281676783616
author Stoltenborg, Iris
Peris-Sampedro, Fiona
Schéle, Erik
Le May, Marie V.
Adan, Roger A. H.
Dickson, Suzanne L.
author_facet Stoltenborg, Iris
Peris-Sampedro, Fiona
Schéle, Erik
Le May, Marie V.
Adan, Roger A. H.
Dickson, Suzanne L.
author_sort Stoltenborg, Iris
collection PubMed
description The availability of Cre-based mouse lines for visualizing and targeting populations of hormone-sensitive cells has helped identify the neural circuitry driving hormone effects. However, these mice have limitations and may not even be available. For instance, the development of the first ghrelin receptor (Ghsr)-IRES-Cre model paved the way for using the Cre-lox system to identify and selectively manipulate ghrelin-responsive populations. The insertion of the IRES-Cre cassette, however, interfered with Ghsr expression, resulting in defective GHSR signaling and a pronounced phenotype in the homozygotes. As an alternative strategy to target ghrelin-responsive cells, we hereby utilize TRAP2 (targeted recombination in active populations) mice in which it is possible to gain genetic access to ghrelin-activated populations. In TRAP2 mice crossed with a reporter strain, we visualized ghrelin-activated cells and found, as expected, much activation in the arcuate nucleus (Arc). We then stimulated this population using a chemogenetic approach and found that this was sufficient to induce an orexigenic response of similar magnitude to that induced by peripheral ghrelin injection. The stimulation of this population also impacted food choice. Thus, the TRAPing of hormone-activated neurons (here exemplified by ghrelin-activated pathways) provides a complimentary/alternative technique to visualize, access and control discrete pathways, linking hormone action to circuit function.
format Online
Article
Text
id pubmed-8745172
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-87451722022-01-11 TRAPing Ghrelin-Activated Circuits: A Novel Tool to Identify, Target and Control Hormone-Responsive Populations in TRAP2 Mice Stoltenborg, Iris Peris-Sampedro, Fiona Schéle, Erik Le May, Marie V. Adan, Roger A. H. Dickson, Suzanne L. Int J Mol Sci Article The availability of Cre-based mouse lines for visualizing and targeting populations of hormone-sensitive cells has helped identify the neural circuitry driving hormone effects. However, these mice have limitations and may not even be available. For instance, the development of the first ghrelin receptor (Ghsr)-IRES-Cre model paved the way for using the Cre-lox system to identify and selectively manipulate ghrelin-responsive populations. The insertion of the IRES-Cre cassette, however, interfered with Ghsr expression, resulting in defective GHSR signaling and a pronounced phenotype in the homozygotes. As an alternative strategy to target ghrelin-responsive cells, we hereby utilize TRAP2 (targeted recombination in active populations) mice in which it is possible to gain genetic access to ghrelin-activated populations. In TRAP2 mice crossed with a reporter strain, we visualized ghrelin-activated cells and found, as expected, much activation in the arcuate nucleus (Arc). We then stimulated this population using a chemogenetic approach and found that this was sufficient to induce an orexigenic response of similar magnitude to that induced by peripheral ghrelin injection. The stimulation of this population also impacted food choice. Thus, the TRAPing of hormone-activated neurons (here exemplified by ghrelin-activated pathways) provides a complimentary/alternative technique to visualize, access and control discrete pathways, linking hormone action to circuit function. MDPI 2022-01-05 /pmc/articles/PMC8745172/ /pubmed/35008985 http://dx.doi.org/10.3390/ijms23010559 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Stoltenborg, Iris
Peris-Sampedro, Fiona
Schéle, Erik
Le May, Marie V.
Adan, Roger A. H.
Dickson, Suzanne L.
TRAPing Ghrelin-Activated Circuits: A Novel Tool to Identify, Target and Control Hormone-Responsive Populations in TRAP2 Mice
title TRAPing Ghrelin-Activated Circuits: A Novel Tool to Identify, Target and Control Hormone-Responsive Populations in TRAP2 Mice
title_full TRAPing Ghrelin-Activated Circuits: A Novel Tool to Identify, Target and Control Hormone-Responsive Populations in TRAP2 Mice
title_fullStr TRAPing Ghrelin-Activated Circuits: A Novel Tool to Identify, Target and Control Hormone-Responsive Populations in TRAP2 Mice
title_full_unstemmed TRAPing Ghrelin-Activated Circuits: A Novel Tool to Identify, Target and Control Hormone-Responsive Populations in TRAP2 Mice
title_short TRAPing Ghrelin-Activated Circuits: A Novel Tool to Identify, Target and Control Hormone-Responsive Populations in TRAP2 Mice
title_sort traping ghrelin-activated circuits: a novel tool to identify, target and control hormone-responsive populations in trap2 mice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8745172/
https://www.ncbi.nlm.nih.gov/pubmed/35008985
http://dx.doi.org/10.3390/ijms23010559
work_keys_str_mv AT stoltenborgiris trapingghrelinactivatedcircuitsanoveltooltoidentifytargetandcontrolhormoneresponsivepopulationsintrap2mice
AT perissampedrofiona trapingghrelinactivatedcircuitsanoveltooltoidentifytargetandcontrolhormoneresponsivepopulationsintrap2mice
AT scheleerik trapingghrelinactivatedcircuitsanoveltooltoidentifytargetandcontrolhormoneresponsivepopulationsintrap2mice
AT lemaymariev trapingghrelinactivatedcircuitsanoveltooltoidentifytargetandcontrolhormoneresponsivepopulationsintrap2mice
AT adanrogerah trapingghrelinactivatedcircuitsanoveltooltoidentifytargetandcontrolhormoneresponsivepopulationsintrap2mice
AT dicksonsuzannel trapingghrelinactivatedcircuitsanoveltooltoidentifytargetandcontrolhormoneresponsivepopulationsintrap2mice