Critical role of neuropeptides B/W receptor 1 signaling in social behavior and fear memory.

Neuropeptide B/W receptor 1 (NPBWR1) is a G-protein coupled receptor, which was initially reported as an orphan receptor, and whose ligands were identified by this and other groups in 2002 and 2003. To examine the physiological roles of NPBWR1, we examined phenotype of Npbwr1⁻/⁻ mice. When presented...

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Autores principales: Ruby Nagata-Kuroiwa, Naoki Furutani, Junko Hara, Mari Hondo, Makoto Ishii, Tomomi Abe, Michihiro Mieda, Natsuko Tsujino, Toshiyuki Motoike, Yuchio Yanagawa, Tomoyuki Kuwaki, Miyuki Yamamoto, Masashi Yanagisawa, Takeshi Sakurai
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Publicado: Public Library of Science (PLoS) 2011
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Acceso en línea:https://doaj.org/article/e3e12003537b4fd08e6322e2985aa46d
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spelling oai:doaj.org-article:e3e12003537b4fd08e6322e2985aa46d2021-11-18T06:58:17ZCritical role of neuropeptides B/W receptor 1 signaling in social behavior and fear memory.1932-620310.1371/journal.pone.0016972https://doaj.org/article/e3e12003537b4fd08e6322e2985aa46d2011-02-01T00:00:00Zhttps://www.ncbi.nlm.nih.gov/pmc/articles/pmid/21390312/?tool=EBIhttps://doaj.org/toc/1932-6203Neuropeptide B/W receptor 1 (NPBWR1) is a G-protein coupled receptor, which was initially reported as an orphan receptor, and whose ligands were identified by this and other groups in 2002 and 2003. To examine the physiological roles of NPBWR1, we examined phenotype of Npbwr1⁻/⁻ mice. When presented with an intruder mouse, Npbwr1⁻/⁻ mice showed impulsive contact with the strange mice, produced more intense approaches toward them, and had longer contact and chasing time along with greater and sustained elevation of heart rate and blood pressure compared to wild type mice. Npbwr1⁻/⁻ mice also showed increased autonomic and neuroendocrine responses to physical stress, suggesting that impairment of NPBWR1 leads to stress vulnerability. We also observed that these mice show abnormality in the contextual fear conditioning test. These data suggest that NPBWR1 plays a critical role in limbic system function and stress responses. Histological and electrophysiological studies showed that NPBWR1 acts as an inhibitory regulator on a subpopulation of GABAergic neurons in the lateral division of the CeA and terminates stress responses. These findings suggest important roles of NPBWR1 in regulating amygdala function during physical and social stress.Ruby Nagata-KuroiwaNaoki FurutaniJunko HaraMari HondoMakoto IshiiTomomi AbeMichihiro MiedaNatsuko TsujinoToshiyuki MotoikeYuchio YanagawaTomoyuki KuwakiMiyuki YamamotoMasashi YanagisawaTakeshi SakuraiPublic Library of Science (PLoS)articleMedicineRScienceQENPLoS ONE, Vol 6, Iss 2, p e16972 (2011)
institution DOAJ
collection DOAJ
language EN
topic Medicine
R
Science
Q
spellingShingle Medicine
R
Science
Q
Ruby Nagata-Kuroiwa
Naoki Furutani
Junko Hara
Mari Hondo
Makoto Ishii
Tomomi Abe
Michihiro Mieda
Natsuko Tsujino
Toshiyuki Motoike
Yuchio Yanagawa
Tomoyuki Kuwaki
Miyuki Yamamoto
Masashi Yanagisawa
Takeshi Sakurai
Critical role of neuropeptides B/W receptor 1 signaling in social behavior and fear memory.
description Neuropeptide B/W receptor 1 (NPBWR1) is a G-protein coupled receptor, which was initially reported as an orphan receptor, and whose ligands were identified by this and other groups in 2002 and 2003. To examine the physiological roles of NPBWR1, we examined phenotype of Npbwr1⁻/⁻ mice. When presented with an intruder mouse, Npbwr1⁻/⁻ mice showed impulsive contact with the strange mice, produced more intense approaches toward them, and had longer contact and chasing time along with greater and sustained elevation of heart rate and blood pressure compared to wild type mice. Npbwr1⁻/⁻ mice also showed increased autonomic and neuroendocrine responses to physical stress, suggesting that impairment of NPBWR1 leads to stress vulnerability. We also observed that these mice show abnormality in the contextual fear conditioning test. These data suggest that NPBWR1 plays a critical role in limbic system function and stress responses. Histological and electrophysiological studies showed that NPBWR1 acts as an inhibitory regulator on a subpopulation of GABAergic neurons in the lateral division of the CeA and terminates stress responses. These findings suggest important roles of NPBWR1 in regulating amygdala function during physical and social stress.
format article
author Ruby Nagata-Kuroiwa
Naoki Furutani
Junko Hara
Mari Hondo
Makoto Ishii
Tomomi Abe
Michihiro Mieda
Natsuko Tsujino
Toshiyuki Motoike
Yuchio Yanagawa
Tomoyuki Kuwaki
Miyuki Yamamoto
Masashi Yanagisawa
Takeshi Sakurai
author_facet Ruby Nagata-Kuroiwa
Naoki Furutani
Junko Hara
Mari Hondo
Makoto Ishii
Tomomi Abe
Michihiro Mieda
Natsuko Tsujino
Toshiyuki Motoike
Yuchio Yanagawa
Tomoyuki Kuwaki
Miyuki Yamamoto
Masashi Yanagisawa
Takeshi Sakurai
author_sort Ruby Nagata-Kuroiwa
title Critical role of neuropeptides B/W receptor 1 signaling in social behavior and fear memory.
title_short Critical role of neuropeptides B/W receptor 1 signaling in social behavior and fear memory.
title_full Critical role of neuropeptides B/W receptor 1 signaling in social behavior and fear memory.
title_fullStr Critical role of neuropeptides B/W receptor 1 signaling in social behavior and fear memory.
title_full_unstemmed Critical role of neuropeptides B/W receptor 1 signaling in social behavior and fear memory.
title_sort critical role of neuropeptides b/w receptor 1 signaling in social behavior and fear memory.
publisher Public Library of Science (PLoS)
publishDate 2011
url https://doaj.org/article/e3e12003537b4fd08e6322e2985aa46d
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