Activation of neuropeptide S-expressing neurons in the locus coeruleus by corticotropin-releasing factor

被引:37
作者
Juengling, Kay [1 ]
Liu, Xiaobin [2 ]
Lesting, Joerg [1 ]
Coulon, Philippe [1 ]
Sosulina, L. [1 ]
Reinscheid, Rainer K. [2 ]
Pape, Hans-Christian [1 ]
机构
[1] Univ Munster, Inst Physiol 1, D-48149 Munster, Germany
[2] Univ Calif Irvine, Dept Pharmaceut Sci, Irvine, CA USA
来源
JOURNAL OF PHYSIOLOGY-LONDON | 2012年 / 590卷 / 16期
关键词
MOUSE-BRAIN; I-H; NORADRENERGIC NEURONS; ANXIETY DISORDERS; LATERAL AMYGDALA; FACTOR RECEPTORS; PANIC DISORDER; CRF RECEPTORS; STRESS; PROTEIN;
D O I
10.1113/jphysiol.2011.226423
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
A recently discovered neurotransmitter system, consisting of neuropeptide S (NPS), NPS receptor, and NPS-expressing neurons in the brain stem, has received considerable interest due to its modulating influence on arousal, anxiety and stress responsiveness. Comparatively little is known about the properties of NPS-expressing neurons. Therefore in the present study, a transgenic mouse line expressing enhanced green fluorescent protein (EGFP) in NPS neurons was used to characterize the cellular and functional properties of NPS-expressing neurons located close to the locus coeruleus. Particular emphasis was on the influence of corticotropin-releasing factor (CRF), given previous evidence of stress-related activation of the NPS system. Upon acute immobilization stress, an increase in c-fos expression was detected immunocytochemically in brain stem NPS-EGFP neurons that also expressed the CRF receptor 1 (CRF1). NPS-EGFP neurons were readily identified in acute slice preparations and responded to CRF application with a membrane depolarization capable of triggering action potentials. CRF-induced responses displayed pharmacological properties indicative of CRF1 that were mediated by both a reduction in membrane potassium conductance and an increase in a non-specific cation conductance different from the hyperpolarization-activated cation conductance I-h, and involved protein kinase A signalling. In conclusion, stress exposure results in activation of brain stem NPS-expressing neurons, involving a CRF1-mediated membrane depolarization via at least two ionic mechanisms. These data provide evidence for a direct interaction between the CRF and the NPS system and thereby extend previous observations of NPS-modulated stress responsiveness towards a mechanistic level.
引用
收藏
页码:3701 / 3717
页数:17
相关论文
共 49 条
[1]   CRF and CRF receptors: Role in stress responsivity and other behaviors [J].
Bale, TL ;
Vale, WW .
ANNUAL REVIEW OF PHARMACOLOGY AND TOXICOLOGY, 2004, 44 :525-557
[2]   Corticotropin-releasing factor receptors couple to multiple G-proteins to activate diverse intracellular signaling pathways in mouse hippocampus: Role in neuronal excitability and associative learning [J].
Blank, T ;
Nijholt, I ;
Grammatopoulos, DK ;
Randeva, HS ;
Hillhouse, EW ;
Spiess, J .
JOURNAL OF NEUROSCIENCE, 2003, 23 (02) :700-707
[3]   Reciprocal modulation of Ih and ITASK in thalamocortical relay neurons by halothane [J].
Budde, Thomas ;
Coulon, Philippe ;
Pawlowski, Matthias ;
Meuth, Patrick ;
Kanyshkova, Tatyana ;
Japes, Ansgar ;
Meuth, Sven G. ;
Pape, Hans-Christian .
PFLUGERS ARCHIV-EUROPEAN JOURNAL OF PHYSIOLOGY, 2008, 456 (06) :1061-1073
[4]   Neuropeptide S produces hyperlocomotion and prevents oxidative stress damage in the mouse brain: A comparative study with amphetamine and diazepam [J].
Castro, A. A. ;
Moretti, M. ;
Casagrande, T. S. ;
Martinello, C. ;
Petronilho, F. ;
Steckert, A. V. ;
Guerrini, R. ;
Calo, G. ;
Dal Pizzol, F. ;
Quevedo, J. ;
Gavioli, E. C. .
PHARMACOLOGY BIOCHEMISTRY AND BEHAVIOR, 2009, 91 (04) :636-642
[5]   Prevention of Stress-Impaired Fear Extinction Through Neuropeptide S Action in the Lateral Amygdala [J].
Chauveau, Frederic ;
Lange, Maren Denise ;
Juengling, Kay ;
Lesting, Joerg ;
Seidenbecher, Thomas ;
Pape, Hans-Christian .
NEUROPSYCHOPHARMACOLOGY, 2012, 37 (07) :1588-1599
[6]   Anatomical Characterization of the Neuropeptide S System in the Mouse Brain by In Situ Hybridization and Immunohistochemistry [J].
Clark, Stewart D. ;
Duangdao, Dee M. ;
Schulz, Stefan ;
Zhang, Li ;
Liu, Xiaobin ;
Xu, Yan-Ling ;
Reinscheid, Rainer K. .
JOURNAL OF COMPARATIVE NEUROLOGY, 2011, 519 (10) :1867-1893
[7]   Stress and the brain:: From adaptation to disease [J].
de Kloet, ER ;
Joëls, M ;
Holsboer, F .
NATURE REVIEWS NEUROSCIENCE, 2005, 6 (06) :463-475
[8]   Neuropeptide S receptor gene-converging evidence for a role in panic disorder [J].
Domschke, K. ;
Reif, A. ;
Weber, H. ;
Richter, J. ;
Hohoff, C. ;
Ohrmann, P. ;
Pedersen, A. ;
Bauer, J. ;
Suslow, T. ;
Kugel, H. ;
Heindel, W. ;
Baumann, C. ;
Klauke, B. ;
Jacob, C. ;
Maier, W. ;
Fritze, J. ;
Bandelow, B. ;
Krakowitzky, P. ;
Rothermundt, M. ;
Erhardt, A. ;
Binder, E. B. ;
Holsboer, F. ;
Gerlach, A. L. ;
Kircher, T. ;
Lang, T. ;
Alpers, G. W. ;
Stroehle, A. ;
Fehm, L. ;
Gloster, A. T. ;
Wittchen, H-U ;
Arolt, V. ;
Pauli, P. ;
Hamm, A. ;
Deckert, J. .
MOLECULAR PSYCHIATRY, 2011, 16 (09) :938-948
[9]   Assessment of the Neuropeptide S System in Anxiety Disorders [J].
Donner, Jonas ;
Haapakoski, Rita ;
Ezer, Sini ;
Melen, Erik ;
Pirkola, Sami ;
Gratacos, Monica ;
Zucchelli, Marco ;
Anedda, Francesca ;
Johansson, Lovisa E. ;
Soderhall, Cilla ;
Orsmark-Pietras, Christina ;
Suvisaari, Jaana ;
Martin-Santos, Rock ;
Torrens, Marta ;
Silander, Kaisa ;
Terwilliger, Joseph D. ;
Wickman, Magnus ;
Pershagen, Goran ;
Lonnqvist, Jouko ;
Peltonen, Leena ;
Estivill, Xavier ;
D'Amato, Mauro ;
Kere, Juha ;
Alenius, Harri ;
Hovatta, Iiris .
BIOLOGICAL PSYCHIATRY, 2010, 68 (05) :474-483
[10]   Increased in vivo release of neuropeptide S in the amygdala of freely moving rats after local depolarisation and emotional stress [J].
Ebner, Karl ;
Rjabokon, Alesja ;
Pape, Hans-Christian ;
Singewald, Nicolas .
AMINO ACIDS, 2011, 41 (04) :991-996