Cargando…

Relaxin/insulin-like family peptide receptor 4 (Rxfp4) expressing hypothalamic neurons modulate food intake and preference in mice

OBJECTIVE: Insulin-like peptide 5 (INSL5) signalling, through its cognate receptor relaxin/insulin-like family peptide receptor 4 (RXFP4), has been reported to be orexigenic, and the high fat diet (HFD) preference observed in wildtype mice is altered in Rxfp4 knock-out mice. In this study, we used a...

Descripción completa

Detalles Bibliográficos
Autores principales: Lewis, Jo E., Woodward, Orla RM., Nuzzaci, Danaé, Smith, Christopher A., Adriaenssens, Alice E., Billing, Lawrence, Brighton, Cheryl, Phillips, Benjamin U., Tadross, John A., Kinston, Sarah J., Ciabatti, Ernesto, Göttgens, Berthold, Tripodi, Marco, Hornigold, David, Baker, David, Gribble, Fiona M., Reimann, Frank
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9579047/
https://www.ncbi.nlm.nih.gov/pubmed/36184065
http://dx.doi.org/10.1016/j.molmet.2022.101604
_version_ 1784812098244575232
author Lewis, Jo E.
Woodward, Orla RM.
Nuzzaci, Danaé
Smith, Christopher A.
Adriaenssens, Alice E.
Billing, Lawrence
Brighton, Cheryl
Phillips, Benjamin U.
Tadross, John A.
Kinston, Sarah J.
Ciabatti, Ernesto
Göttgens, Berthold
Tripodi, Marco
Hornigold, David
Baker, David
Gribble, Fiona M.
Reimann, Frank
author_facet Lewis, Jo E.
Woodward, Orla RM.
Nuzzaci, Danaé
Smith, Christopher A.
Adriaenssens, Alice E.
Billing, Lawrence
Brighton, Cheryl
Phillips, Benjamin U.
Tadross, John A.
Kinston, Sarah J.
Ciabatti, Ernesto
Göttgens, Berthold
Tripodi, Marco
Hornigold, David
Baker, David
Gribble, Fiona M.
Reimann, Frank
author_sort Lewis, Jo E.
collection PubMed
description OBJECTIVE: Insulin-like peptide 5 (INSL5) signalling, through its cognate receptor relaxin/insulin-like family peptide receptor 4 (RXFP4), has been reported to be orexigenic, and the high fat diet (HFD) preference observed in wildtype mice is altered in Rxfp4 knock-out mice. In this study, we used a new Rxfp4-Cre mouse model to investigate the mechanisms underlying these observations. METHODS: We generated transgenic Rxfp4-Cre mice and investigated central expression of Rxfp4 by RT-qPCR, RNAscope and intraparenchymal infusion of INSL5. Rxfp4-expressing cells were chemogenetically manipulated in global Cre-reporter mice using designer receptors exclusively activated by designer drugs (DREADDs) or after stereotactic injection of a Cre-dependent AAV-DIO-Dq-DREADD targeting a population located in the ventromedial hypothalamus (RXFP4(VMH)). Food intake and feeding motivation were assessed in the presence and absence of a DREADD agonist. Rxfp4-expressing cells in the hypothalamus were characterised by single-cell RNA-sequencing (scRNAseq) and the connectivity of RXFP4(VMH) cells was investigated using viral tracing. RESULTS: Rxfp4-Cre mice displayed Cre-reporter expression in the hypothalamus. Active expression of Rxfp4 in the adult mouse brain was confirmed by RT-qPCR and RNAscope. Functional receptor expression was supported by cyclic AMP-responses to INSL5 application in ex vivo brain slices and increased HFD and highly palatable liquid meal (HPM), but not chow, intake after intra-VMH INSL5 infusion. scRNAseq of hypothalamic RXFP4 neurons defined a cluster expressing VMH markers, alongside known appetite-modulating neuropeptide receptors (Mc4r, Cckar and Nmur2). Viral tracing demonstrated RXFP4(VMH) neural projections to nuclei implicated in hedonic feeding behaviour. Whole body chemogenetic inhibition (Di-DREADD) of Rxfp4-expressing cells, mimicking physiological INSL5-RXFP4 Gi-signalling, increased intake of the HFD and HPM, but not chow, whilst activation (Dq-DREADD), either at whole body level or specifically within the VMH, reduced HFD and HPM intake and motivation to work for the HPM. CONCLUSION: These findings identify RXFP4(VMH) neurons as regulators of food intake and preference, and hypothalamic RXFP4 signalling as a target for feeding behaviour manipulation.
format Online
Article
Text
id pubmed-9579047
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-95790472022-10-20 Relaxin/insulin-like family peptide receptor 4 (Rxfp4) expressing hypothalamic neurons modulate food intake and preference in mice Lewis, Jo E. Woodward, Orla RM. Nuzzaci, Danaé Smith, Christopher A. Adriaenssens, Alice E. Billing, Lawrence Brighton, Cheryl Phillips, Benjamin U. Tadross, John A. Kinston, Sarah J. Ciabatti, Ernesto Göttgens, Berthold Tripodi, Marco Hornigold, David Baker, David Gribble, Fiona M. Reimann, Frank Mol Metab Original Article OBJECTIVE: Insulin-like peptide 5 (INSL5) signalling, through its cognate receptor relaxin/insulin-like family peptide receptor 4 (RXFP4), has been reported to be orexigenic, and the high fat diet (HFD) preference observed in wildtype mice is altered in Rxfp4 knock-out mice. In this study, we used a new Rxfp4-Cre mouse model to investigate the mechanisms underlying these observations. METHODS: We generated transgenic Rxfp4-Cre mice and investigated central expression of Rxfp4 by RT-qPCR, RNAscope and intraparenchymal infusion of INSL5. Rxfp4-expressing cells were chemogenetically manipulated in global Cre-reporter mice using designer receptors exclusively activated by designer drugs (DREADDs) or after stereotactic injection of a Cre-dependent AAV-DIO-Dq-DREADD targeting a population located in the ventromedial hypothalamus (RXFP4(VMH)). Food intake and feeding motivation were assessed in the presence and absence of a DREADD agonist. Rxfp4-expressing cells in the hypothalamus were characterised by single-cell RNA-sequencing (scRNAseq) and the connectivity of RXFP4(VMH) cells was investigated using viral tracing. RESULTS: Rxfp4-Cre mice displayed Cre-reporter expression in the hypothalamus. Active expression of Rxfp4 in the adult mouse brain was confirmed by RT-qPCR and RNAscope. Functional receptor expression was supported by cyclic AMP-responses to INSL5 application in ex vivo brain slices and increased HFD and highly palatable liquid meal (HPM), but not chow, intake after intra-VMH INSL5 infusion. scRNAseq of hypothalamic RXFP4 neurons defined a cluster expressing VMH markers, alongside known appetite-modulating neuropeptide receptors (Mc4r, Cckar and Nmur2). Viral tracing demonstrated RXFP4(VMH) neural projections to nuclei implicated in hedonic feeding behaviour. Whole body chemogenetic inhibition (Di-DREADD) of Rxfp4-expressing cells, mimicking physiological INSL5-RXFP4 Gi-signalling, increased intake of the HFD and HPM, but not chow, whilst activation (Dq-DREADD), either at whole body level or specifically within the VMH, reduced HFD and HPM intake and motivation to work for the HPM. CONCLUSION: These findings identify RXFP4(VMH) neurons as regulators of food intake and preference, and hypothalamic RXFP4 signalling as a target for feeding behaviour manipulation. Elsevier 2022-09-30 /pmc/articles/PMC9579047/ /pubmed/36184065 http://dx.doi.org/10.1016/j.molmet.2022.101604 Text en © 2022 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Original Article
Lewis, Jo E.
Woodward, Orla RM.
Nuzzaci, Danaé
Smith, Christopher A.
Adriaenssens, Alice E.
Billing, Lawrence
Brighton, Cheryl
Phillips, Benjamin U.
Tadross, John A.
Kinston, Sarah J.
Ciabatti, Ernesto
Göttgens, Berthold
Tripodi, Marco
Hornigold, David
Baker, David
Gribble, Fiona M.
Reimann, Frank
Relaxin/insulin-like family peptide receptor 4 (Rxfp4) expressing hypothalamic neurons modulate food intake and preference in mice
title Relaxin/insulin-like family peptide receptor 4 (Rxfp4) expressing hypothalamic neurons modulate food intake and preference in mice
title_full Relaxin/insulin-like family peptide receptor 4 (Rxfp4) expressing hypothalamic neurons modulate food intake and preference in mice
title_fullStr Relaxin/insulin-like family peptide receptor 4 (Rxfp4) expressing hypothalamic neurons modulate food intake and preference in mice
title_full_unstemmed Relaxin/insulin-like family peptide receptor 4 (Rxfp4) expressing hypothalamic neurons modulate food intake and preference in mice
title_short Relaxin/insulin-like family peptide receptor 4 (Rxfp4) expressing hypothalamic neurons modulate food intake and preference in mice
title_sort relaxin/insulin-like family peptide receptor 4 (rxfp4) expressing hypothalamic neurons modulate food intake and preference in mice
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9579047/
https://www.ncbi.nlm.nih.gov/pubmed/36184065
http://dx.doi.org/10.1016/j.molmet.2022.101604
work_keys_str_mv AT lewisjoe relaxininsulinlikefamilypeptidereceptor4rxfp4expressinghypothalamicneuronsmodulatefoodintakeandpreferenceinmice
AT woodwardorlarm relaxininsulinlikefamilypeptidereceptor4rxfp4expressinghypothalamicneuronsmodulatefoodintakeandpreferenceinmice
AT nuzzacidanae relaxininsulinlikefamilypeptidereceptor4rxfp4expressinghypothalamicneuronsmodulatefoodintakeandpreferenceinmice
AT smithchristophera relaxininsulinlikefamilypeptidereceptor4rxfp4expressinghypothalamicneuronsmodulatefoodintakeandpreferenceinmice
AT adriaenssensalicee relaxininsulinlikefamilypeptidereceptor4rxfp4expressinghypothalamicneuronsmodulatefoodintakeandpreferenceinmice
AT billinglawrence relaxininsulinlikefamilypeptidereceptor4rxfp4expressinghypothalamicneuronsmodulatefoodintakeandpreferenceinmice
AT brightoncheryl relaxininsulinlikefamilypeptidereceptor4rxfp4expressinghypothalamicneuronsmodulatefoodintakeandpreferenceinmice
AT phillipsbenjaminu relaxininsulinlikefamilypeptidereceptor4rxfp4expressinghypothalamicneuronsmodulatefoodintakeandpreferenceinmice
AT tadrossjohna relaxininsulinlikefamilypeptidereceptor4rxfp4expressinghypothalamicneuronsmodulatefoodintakeandpreferenceinmice
AT kinstonsarahj relaxininsulinlikefamilypeptidereceptor4rxfp4expressinghypothalamicneuronsmodulatefoodintakeandpreferenceinmice
AT ciabattiernesto relaxininsulinlikefamilypeptidereceptor4rxfp4expressinghypothalamicneuronsmodulatefoodintakeandpreferenceinmice
AT gottgensberthold relaxininsulinlikefamilypeptidereceptor4rxfp4expressinghypothalamicneuronsmodulatefoodintakeandpreferenceinmice
AT tripodimarco relaxininsulinlikefamilypeptidereceptor4rxfp4expressinghypothalamicneuronsmodulatefoodintakeandpreferenceinmice
AT hornigolddavid relaxininsulinlikefamilypeptidereceptor4rxfp4expressinghypothalamicneuronsmodulatefoodintakeandpreferenceinmice
AT bakerdavid relaxininsulinlikefamilypeptidereceptor4rxfp4expressinghypothalamicneuronsmodulatefoodintakeandpreferenceinmice
AT gribblefionam relaxininsulinlikefamilypeptidereceptor4rxfp4expressinghypothalamicneuronsmodulatefoodintakeandpreferenceinmice
AT reimannfrank relaxininsulinlikefamilypeptidereceptor4rxfp4expressinghypothalamicneuronsmodulatefoodintakeandpreferenceinmice