Cargando…

CRFR1 in AgRP Neurons Modulates Sympathetic Nervous System Activity to Adapt to Cold Stress and Fasting

Signaling by the corticotropin-releasing factor receptor type 1 (CRFR1) plays an important role in mediating the autonomic response to stressful challenges. Multiple hypothalamic nuclei regulate sympathetic outflow. Although CRFR1 is highly expressed in the arcuate nucleus (Arc) of the hypothalamus,...

Descripción completa

Detalles Bibliográficos
Autores principales: Kuperman, Yael, Weiss, Meira, Dine, Julien, Staikin, Katy, Golani, Ofra, Ramot, Assaf, Nahum, Tali, Kühne, Claudia, Shemesh, Yair, Wurst, Wolfgang, Harmelin, Alon, Deussing, Jan M., Eder, Matthias, Chen, Alon
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4911344/
https://www.ncbi.nlm.nih.gov/pubmed/27211900
http://dx.doi.org/10.1016/j.cmet.2016.04.017
_version_ 1782438109126852608
author Kuperman, Yael
Weiss, Meira
Dine, Julien
Staikin, Katy
Golani, Ofra
Ramot, Assaf
Nahum, Tali
Kühne, Claudia
Shemesh, Yair
Wurst, Wolfgang
Harmelin, Alon
Deussing, Jan M.
Eder, Matthias
Chen, Alon
author_facet Kuperman, Yael
Weiss, Meira
Dine, Julien
Staikin, Katy
Golani, Ofra
Ramot, Assaf
Nahum, Tali
Kühne, Claudia
Shemesh, Yair
Wurst, Wolfgang
Harmelin, Alon
Deussing, Jan M.
Eder, Matthias
Chen, Alon
author_sort Kuperman, Yael
collection PubMed
description Signaling by the corticotropin-releasing factor receptor type 1 (CRFR1) plays an important role in mediating the autonomic response to stressful challenges. Multiple hypothalamic nuclei regulate sympathetic outflow. Although CRFR1 is highly expressed in the arcuate nucleus (Arc) of the hypothalamus, the identity of these neurons and the role of CRFR1 here are presently unknown. Our studies show that nearly half of Arc-CRFR1 neurons coexpress agouti-related peptide (AgRP), half of which originate from POMC precursors. Arc-CRFR1 neurons are innervated by CRF neurons in the hypothalamic paraventricular nucleus, and CRF application decreases AgRP(+)CRFR1(+) neurons’ excitability. Despite similar anatomy in both sexes, only female mice selectively lacking CRFR1 in AgRP neurons showed a maladaptive thermogenic response to cold and reduced hepatic glucose production during fasting. Thus, CRFR1, in a subset of AgRP neurons, plays a regulatory role that enables appropriate sympathetic nervous system activation and consequently protects the organism from hypothermia and hypoglycemia.
format Online
Article
Text
id pubmed-4911344
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Cell Press
record_format MEDLINE/PubMed
spelling pubmed-49113442016-06-26 CRFR1 in AgRP Neurons Modulates Sympathetic Nervous System Activity to Adapt to Cold Stress and Fasting Kuperman, Yael Weiss, Meira Dine, Julien Staikin, Katy Golani, Ofra Ramot, Assaf Nahum, Tali Kühne, Claudia Shemesh, Yair Wurst, Wolfgang Harmelin, Alon Deussing, Jan M. Eder, Matthias Chen, Alon Cell Metab Article Signaling by the corticotropin-releasing factor receptor type 1 (CRFR1) plays an important role in mediating the autonomic response to stressful challenges. Multiple hypothalamic nuclei regulate sympathetic outflow. Although CRFR1 is highly expressed in the arcuate nucleus (Arc) of the hypothalamus, the identity of these neurons and the role of CRFR1 here are presently unknown. Our studies show that nearly half of Arc-CRFR1 neurons coexpress agouti-related peptide (AgRP), half of which originate from POMC precursors. Arc-CRFR1 neurons are innervated by CRF neurons in the hypothalamic paraventricular nucleus, and CRF application decreases AgRP(+)CRFR1(+) neurons’ excitability. Despite similar anatomy in both sexes, only female mice selectively lacking CRFR1 in AgRP neurons showed a maladaptive thermogenic response to cold and reduced hepatic glucose production during fasting. Thus, CRFR1, in a subset of AgRP neurons, plays a regulatory role that enables appropriate sympathetic nervous system activation and consequently protects the organism from hypothermia and hypoglycemia. Cell Press 2016-06-14 /pmc/articles/PMC4911344/ /pubmed/27211900 http://dx.doi.org/10.1016/j.cmet.2016.04.017 Text en © 2016 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Kuperman, Yael
Weiss, Meira
Dine, Julien
Staikin, Katy
Golani, Ofra
Ramot, Assaf
Nahum, Tali
Kühne, Claudia
Shemesh, Yair
Wurst, Wolfgang
Harmelin, Alon
Deussing, Jan M.
Eder, Matthias
Chen, Alon
CRFR1 in AgRP Neurons Modulates Sympathetic Nervous System Activity to Adapt to Cold Stress and Fasting
title CRFR1 in AgRP Neurons Modulates Sympathetic Nervous System Activity to Adapt to Cold Stress and Fasting
title_full CRFR1 in AgRP Neurons Modulates Sympathetic Nervous System Activity to Adapt to Cold Stress and Fasting
title_fullStr CRFR1 in AgRP Neurons Modulates Sympathetic Nervous System Activity to Adapt to Cold Stress and Fasting
title_full_unstemmed CRFR1 in AgRP Neurons Modulates Sympathetic Nervous System Activity to Adapt to Cold Stress and Fasting
title_short CRFR1 in AgRP Neurons Modulates Sympathetic Nervous System Activity to Adapt to Cold Stress and Fasting
title_sort crfr1 in agrp neurons modulates sympathetic nervous system activity to adapt to cold stress and fasting
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4911344/
https://www.ncbi.nlm.nih.gov/pubmed/27211900
http://dx.doi.org/10.1016/j.cmet.2016.04.017
work_keys_str_mv AT kupermanyael crfr1inagrpneuronsmodulatessympatheticnervoussystemactivitytoadapttocoldstressandfasting
AT weissmeira crfr1inagrpneuronsmodulatessympatheticnervoussystemactivitytoadapttocoldstressandfasting
AT dinejulien crfr1inagrpneuronsmodulatessympatheticnervoussystemactivitytoadapttocoldstressandfasting
AT staikinkaty crfr1inagrpneuronsmodulatessympatheticnervoussystemactivitytoadapttocoldstressandfasting
AT golaniofra crfr1inagrpneuronsmodulatessympatheticnervoussystemactivitytoadapttocoldstressandfasting
AT ramotassaf crfr1inagrpneuronsmodulatessympatheticnervoussystemactivitytoadapttocoldstressandfasting
AT nahumtali crfr1inagrpneuronsmodulatessympatheticnervoussystemactivitytoadapttocoldstressandfasting
AT kuhneclaudia crfr1inagrpneuronsmodulatessympatheticnervoussystemactivitytoadapttocoldstressandfasting
AT shemeshyair crfr1inagrpneuronsmodulatessympatheticnervoussystemactivitytoadapttocoldstressandfasting
AT wurstwolfgang crfr1inagrpneuronsmodulatessympatheticnervoussystemactivitytoadapttocoldstressandfasting
AT harmelinalon crfr1inagrpneuronsmodulatessympatheticnervoussystemactivitytoadapttocoldstressandfasting
AT deussingjanm crfr1inagrpneuronsmodulatessympatheticnervoussystemactivitytoadapttocoldstressandfasting
AT edermatthias crfr1inagrpneuronsmodulatessympatheticnervoussystemactivitytoadapttocoldstressandfasting
AT chenalon crfr1inagrpneuronsmodulatessympatheticnervoussystemactivitytoadapttocoldstressandfasting