Cargando…
Bombesin receptor subtype‐3‐expressing neurons regulate energy homeostasis through a novel neuronal pathway in the hypothalamus
OBJECTIVES: Bombesin receptor subtype‐3 (BRS‐3) has been suggested to play a potential role in energy homeostasis. However, the physiological mechanism of BRS‐3 on energy homeostasis remains unknown. Thus, we investigated the BRS‐3‐mediated neuronal pathway involved in food intake and energy expendi...
Autores principales: | , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
John Wiley and Sons Inc.
2017
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5853643/ https://www.ncbi.nlm.nih.gov/pubmed/29568682 http://dx.doi.org/10.1002/brb3.881 |
_version_ | 1783306789348966400 |
---|---|
author | Maruyama, Minoru Hotta, Natsu Nio, Yasunori Hamagami, Kenichi Nagi, Toshimi Funata, Masaaki Sakamoto, Junichi Nakakariya, Masanori Amano, Nobuyuki Nishida, Mayumi Okawa, Tomohiro Arikawa, Yasuyoshi Sasaki, Shinobu Kasai, Shizuo Nagisa, Yasutaka Habata, Yugo Mori, Masaaki |
author_facet | Maruyama, Minoru Hotta, Natsu Nio, Yasunori Hamagami, Kenichi Nagi, Toshimi Funata, Masaaki Sakamoto, Junichi Nakakariya, Masanori Amano, Nobuyuki Nishida, Mayumi Okawa, Tomohiro Arikawa, Yasuyoshi Sasaki, Shinobu Kasai, Shizuo Nagisa, Yasutaka Habata, Yugo Mori, Masaaki |
author_sort | Maruyama, Minoru |
collection | PubMed |
description | OBJECTIVES: Bombesin receptor subtype‐3 (BRS‐3) has been suggested to play a potential role in energy homeostasis. However, the physiological mechanism of BRS‐3 on energy homeostasis remains unknown. Thus, we investigated the BRS‐3‐mediated neuronal pathway involved in food intake and energy expenditure. MATERIALS AND METHODS: Expression of BRS‐3 in the rat brain was histologically examined. The BRS‐3 neurons activated by refeeding‐induced satiety or a BRS‐3 agonist were identified by c‐Fos immunostaining. We also analyzed expression changes in feeding‐relating peptides in the brain of fasted rats administered with the BRS‐3 agonist. RESULTS: In the paraventricular hypothalamic nucleus (PVH), dorsomedial hypothalamic nucleus (DMH), and medial preoptic area (MPA), strong c‐Fos induction was observed in the BRS‐3 neurons especially in PVH after refeeding. However, the BRS‐3 neurons in the PVH did not express feeding‐regulating peptides, while the BRS‐3 agonist administration induced c‐Fos expression in the DMH and MPA, which were not refeeding‐sensitive, as well as in the PVH. The BRS‐3 agonist administration changed the Pomc and Cart mRNA level in several brain regions of fasted rats. CONCLUSION: These results suggest that BRS‐3 neurons in the PVH are a novel functional subdivision in the PVH that regulates feeding behavior. As the MPA and DMH are reportedly involved in thermoregulation and energy metabolism, the BRS‐3 neurons in the MPA/DMH might mediate the energy expenditure control. POMC and CART may contribute to BRS‐3 neuron‐mediated energy homeostasis regulation. In summary, BRS‐3‐expressing neurons could regulate energy homeostasis through a novel neuronal pathway. |
format | Online Article Text |
id | pubmed-5853643 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2017 |
publisher | John Wiley and Sons Inc. |
record_format | MEDLINE/PubMed |
spelling | pubmed-58536432018-03-22 Bombesin receptor subtype‐3‐expressing neurons regulate energy homeostasis through a novel neuronal pathway in the hypothalamus Maruyama, Minoru Hotta, Natsu Nio, Yasunori Hamagami, Kenichi Nagi, Toshimi Funata, Masaaki Sakamoto, Junichi Nakakariya, Masanori Amano, Nobuyuki Nishida, Mayumi Okawa, Tomohiro Arikawa, Yasuyoshi Sasaki, Shinobu Kasai, Shizuo Nagisa, Yasutaka Habata, Yugo Mori, Masaaki Brain Behav Original Research OBJECTIVES: Bombesin receptor subtype‐3 (BRS‐3) has been suggested to play a potential role in energy homeostasis. However, the physiological mechanism of BRS‐3 on energy homeostasis remains unknown. Thus, we investigated the BRS‐3‐mediated neuronal pathway involved in food intake and energy expenditure. MATERIALS AND METHODS: Expression of BRS‐3 in the rat brain was histologically examined. The BRS‐3 neurons activated by refeeding‐induced satiety or a BRS‐3 agonist were identified by c‐Fos immunostaining. We also analyzed expression changes in feeding‐relating peptides in the brain of fasted rats administered with the BRS‐3 agonist. RESULTS: In the paraventricular hypothalamic nucleus (PVH), dorsomedial hypothalamic nucleus (DMH), and medial preoptic area (MPA), strong c‐Fos induction was observed in the BRS‐3 neurons especially in PVH after refeeding. However, the BRS‐3 neurons in the PVH did not express feeding‐regulating peptides, while the BRS‐3 agonist administration induced c‐Fos expression in the DMH and MPA, which were not refeeding‐sensitive, as well as in the PVH. The BRS‐3 agonist administration changed the Pomc and Cart mRNA level in several brain regions of fasted rats. CONCLUSION: These results suggest that BRS‐3 neurons in the PVH are a novel functional subdivision in the PVH that regulates feeding behavior. As the MPA and DMH are reportedly involved in thermoregulation and energy metabolism, the BRS‐3 neurons in the MPA/DMH might mediate the energy expenditure control. POMC and CART may contribute to BRS‐3 neuron‐mediated energy homeostasis regulation. In summary, BRS‐3‐expressing neurons could regulate energy homeostasis through a novel neuronal pathway. John Wiley and Sons Inc. 2017-12-15 /pmc/articles/PMC5853643/ /pubmed/29568682 http://dx.doi.org/10.1002/brb3.881 Text en © 2017 The Authors. Brain and Behavior published by Wiley Periodicals, Inc. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Original Research Maruyama, Minoru Hotta, Natsu Nio, Yasunori Hamagami, Kenichi Nagi, Toshimi Funata, Masaaki Sakamoto, Junichi Nakakariya, Masanori Amano, Nobuyuki Nishida, Mayumi Okawa, Tomohiro Arikawa, Yasuyoshi Sasaki, Shinobu Kasai, Shizuo Nagisa, Yasutaka Habata, Yugo Mori, Masaaki Bombesin receptor subtype‐3‐expressing neurons regulate energy homeostasis through a novel neuronal pathway in the hypothalamus |
title | Bombesin receptor subtype‐3‐expressing neurons regulate energy homeostasis through a novel neuronal pathway in the hypothalamus |
title_full | Bombesin receptor subtype‐3‐expressing neurons regulate energy homeostasis through a novel neuronal pathway in the hypothalamus |
title_fullStr | Bombesin receptor subtype‐3‐expressing neurons regulate energy homeostasis through a novel neuronal pathway in the hypothalamus |
title_full_unstemmed | Bombesin receptor subtype‐3‐expressing neurons regulate energy homeostasis through a novel neuronal pathway in the hypothalamus |
title_short | Bombesin receptor subtype‐3‐expressing neurons regulate energy homeostasis through a novel neuronal pathway in the hypothalamus |
title_sort | bombesin receptor subtype‐3‐expressing neurons regulate energy homeostasis through a novel neuronal pathway in the hypothalamus |
topic | Original Research |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5853643/ https://www.ncbi.nlm.nih.gov/pubmed/29568682 http://dx.doi.org/10.1002/brb3.881 |
work_keys_str_mv | AT maruyamaminoru bombesinreceptorsubtype3expressingneuronsregulateenergyhomeostasisthroughanovelneuronalpathwayinthehypothalamus AT hottanatsu bombesinreceptorsubtype3expressingneuronsregulateenergyhomeostasisthroughanovelneuronalpathwayinthehypothalamus AT nioyasunori bombesinreceptorsubtype3expressingneuronsregulateenergyhomeostasisthroughanovelneuronalpathwayinthehypothalamus AT hamagamikenichi bombesinreceptorsubtype3expressingneuronsregulateenergyhomeostasisthroughanovelneuronalpathwayinthehypothalamus AT nagitoshimi bombesinreceptorsubtype3expressingneuronsregulateenergyhomeostasisthroughanovelneuronalpathwayinthehypothalamus AT funatamasaaki bombesinreceptorsubtype3expressingneuronsregulateenergyhomeostasisthroughanovelneuronalpathwayinthehypothalamus AT sakamotojunichi bombesinreceptorsubtype3expressingneuronsregulateenergyhomeostasisthroughanovelneuronalpathwayinthehypothalamus AT nakakariyamasanori bombesinreceptorsubtype3expressingneuronsregulateenergyhomeostasisthroughanovelneuronalpathwayinthehypothalamus AT amanonobuyuki bombesinreceptorsubtype3expressingneuronsregulateenergyhomeostasisthroughanovelneuronalpathwayinthehypothalamus AT nishidamayumi bombesinreceptorsubtype3expressingneuronsregulateenergyhomeostasisthroughanovelneuronalpathwayinthehypothalamus AT okawatomohiro bombesinreceptorsubtype3expressingneuronsregulateenergyhomeostasisthroughanovelneuronalpathwayinthehypothalamus AT arikawayasuyoshi bombesinreceptorsubtype3expressingneuronsregulateenergyhomeostasisthroughanovelneuronalpathwayinthehypothalamus AT sasakishinobu bombesinreceptorsubtype3expressingneuronsregulateenergyhomeostasisthroughanovelneuronalpathwayinthehypothalamus AT kasaishizuo bombesinreceptorsubtype3expressingneuronsregulateenergyhomeostasisthroughanovelneuronalpathwayinthehypothalamus AT nagisayasutaka bombesinreceptorsubtype3expressingneuronsregulateenergyhomeostasisthroughanovelneuronalpathwayinthehypothalamus AT habatayugo bombesinreceptorsubtype3expressingneuronsregulateenergyhomeostasisthroughanovelneuronalpathwayinthehypothalamus AT morimasaaki bombesinreceptorsubtype3expressingneuronsregulateenergyhomeostasisthroughanovelneuronalpathwayinthehypothalamus |