Impaired anandamide/palmitoylethanolamide signaling in hippocampal glutamatergic neurons alters synaptic plasticity, learning, and emotional responses

被引:0
|
作者
Tina Zimmermann
Julia C. Bartsch
Annika Beer
Ermelinda Lomazzo
Stephan Guggenhuber
Maren D. Lange
Laura Bindila
Hans-Christian Pape
Beat Lutz
机构
[1] University Medical Center of the Johannes Gutenberg University Mainz,Institute of Physiological Chemistry
[2] Westfälische Wilhelms-University Münster,Institute of Physiology I
[3] University Medical Center of the Johannes Gutenberg University Mainz,German Resilience Center (DRZ)
来源
Neuropsychopharmacology | 2019年 / 44卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Endocannabinoid signaling via anandamide (AEA) is implicated in a variety of neuronal functions and considered a promising therapeutic target for numerous emotion-related disorders. The major AEA degrading enzyme is fatty acid amide hydrolase (FAAH). Genetic deletion and pharmacological inhibition of FAAH reduce anxiety and improve emotional responses and memory in rodents and humans. Complementarily, the mechanisms and impact of decreased AEA signaling remain to be delineated in detail. In the present study, using the Cre/loxP system combined with an adeno-associated virus (AAV)-mediated delivery system, FAAH was selectively overexpressed in hippocampal CA1-CA3 glutamatergic neurons of adult mice. This approach led to specific FAAH overexpression at the postsynaptic site of CA1-CA3 neurons, to increased FAAH enzymatic activity, and, in consequence, to decreased hippocampal levels of AEA and palmitoylethanolamide (PEA), but the levels of the second major endocannabinoid 2-arachidonoyl glycerol (2-AG) and of oleoylethanolamide (OEA) were unchanged. Electrophysiological recordings revealed an enhancement of both excitatory and inhibitory synaptic activity and of long-term potentiation (LTP). In contrast, excitatory and inhibitory long-term depression (LTD) and short-term synaptic plasticity, apparent as depolarization-induced suppression of excitation (DSE) and inhibition (DSI), remained unaltered. These changes in hippocampal synaptic activity were associated with an increase in anxiety-like behavior, and a deficit in object recognition memory and in extinction of aversive memory. This study indicates that AEA is not involved in hippocampal short-term plasticity, or eLTD and iLTD, but modulates glutamatergic transmission most likely via presynaptic sites, and that disturbances in this process impair learning and emotional responses.
引用
收藏
页码:1377 / 1388
页数:11
相关论文
共 47 条
  • [41] GLUTAMATERGIC HYPEREXCITABILITY IN HIPPOCAMPAL NEURONS INDUCED BY LOW-INTENSITY BLAST EXPOSURE IS CONTRIBUTIVE TO LONG-TERM LEARNING DEFICITS AND ANXIETY-LIKE RESPONSES IN MICE
    Siedhoff, Heather
    Chen, Shanyan
    Zhang, Hua
    Liu, Pei
    Balderrama, Ashley
    Johnson, Catherine E.
    Greenlief, C. Michael
    Li, De-Pei
    DePalma, Ralph G.
    Cui, Jiankun
    Gu, Zezong
    JOURNAL OF NEUROTRAUMA, 2022, 39 (11-12) : A7 - A7
  • [42] Translation of BDNF-gene transcripts with short 3′ UTR in hippocampal CA1 neurons improves memory formation and enhances synaptic plasticity-relevant signaling pathways
    Wang, Man
    Li, Dongxue
    Yun, Di
    Zhuang, Yinghan
    Repunte-Canonigo, Vez
    Sanna, Pietro Paolo
    Behnisch, Thomas
    NEUROBIOLOGY OF LEARNING AND MEMORY, 2017, 138 : 121 - 134
  • [43] Associative Learning and CA3-CA1 Synaptic Plasticity Are Impaired in D1R Null, Drd1a-/- Mice and in Hippocampal siRNA Silenced Drd1a Mice
    Ortiz, Oskar
    Maria Delgado-Garcia, Jose
    Espadas, Isabel
    Bahi, Amine
    Trullas, Ramon
    Dreyer, Jean-Luc
    Gruart, Agnes
    Moratalla, Rosario
    JOURNAL OF NEUROSCIENCE, 2010, 30 (37): : 12288 - 12300
  • [44] Impaired synaptic clustering of postsynaptic density proteins and altered signal transmission in hippocampal neurons, and disrupted learning behavior in PDZ1 and PDZ2 ligand binding-deficient PSD-95 knockin mice
    Hitoshi Nagura
    Yasuyuki Ishikawa
    Katsunori Kobayashi
    Keizo Takao
    Tomo Tanaka
    Kouki Nishikawa
    Hideki Tamura
    Sadao Shiosaka
    Hidenori Suzuki
    Tsuyoshi Miyakawa
    Yoshinori Fujiyoshi
    Tomoko Doi
    Molecular Brain, 5
  • [45] Impaired synaptic clustering of postsynaptic density proteins and altered signal transmission in hippocampal neurons, and disrupted learning behavior in PDZ1 and PDZ2 ligand binding-deficient PSD-95 knockin mice
    Nagura, Hitoshi
    Ishikawa, Yasuyuki
    Kobayashi, Katsunori
    Takao, Keizo
    Tanaka, Tomo
    Nishikawa, Kouki
    Tamura, Hideki
    Shiosaka, Sadao
    Suzuki, Hidenori
    Miyakawa, Tsuyoshi
    Fujiyoshi, Yoshinori
    Doi, Tomoko
    MOLECULAR BRAIN, 2012, 5
  • [46] Infant avoidance training alters cellular activation patterns in prefronto-limbic circuits during adult avoidance learning: I. Cellular imaging of neurons expressing the synaptic plasticity early growth response protein 1 (Egr1)
    Nicole Gröger
    Anja Mannewitz
    Jörg Bock
    Tony Fernando de Schultz
    Katja Guttmann
    Gerd Poeggel
    Katharina Braun
    Brain Structure and Function, 2017, 222 : 3639 - 3651
  • [47] Infant avoidance training alters cellular activation patterns in prefronto-limbic circuits during adult avoidance learning: I. Cellular imaging of neurons expressing the synaptic plasticity early growth response protein 1 (Egr1)
    Groeger, Nicole
    Mannewitz, Anja
    Bock, Joerg
    de Schultz, Tony Fernando
    Guttmann, Katja
    Poeggel, Gerd
    Braun, Katharina
    BRAIN STRUCTURE & FUNCTION, 2017, 222 (08): : 3639 - 3651