Neuronal glutamate transporters regulate synaptic transmission in single synapses on CA1 hippocampal neurons

被引:7
|
作者
Kondratskaya, Elena [1 ,2 ]
Shin, Min-Chul [2 ]
Akaike, Norio [2 ]
机构
[1] Bogomoletz Inst Physiol, Dept Cellular Membranol, UA-02410 Kiev, Ukraine
[2] Kumamoto Hlth Sci Univ, Res Div Life Sci, Kumamoto 8615598, Japan
关键词
Excitatory postsynaptic currents (eEPSC); Neuronal glutamate transporters; Single bouton stimulation; CA1 hippocampal neuron; PAIRED-PULSE FACILITATION; AMINO-ACID TRANSPORTERS; RAT HIPPOCAMPUS; GRANULE CELLS; RELEASE; KINETICS; BRAIN; LOCALIZATION; PERMEATION; ASTROCYTES;
D O I
10.1016/j.brainresbull.2009.07.014
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Glutamate is the major excitatory transmitter in CNS although it causes severe brain damage by pathologic excitotoxicity. Efficient neurotransmission is controlled by powerful protection and support afforded by specific high-affinity glutamate transporters in neurons and glia, clearing synaptic glutamate. While the role of glial cells in glutamate uptake is well defined, the role of neuronal transporters remains poorly understood. The evaluation of impact of neuronal transporters on spontaneous and evoked EPSC in hippocampal CA1 neurons within a model 'single bouton preparation' by pre-and postsynaptic uptake was addressed. In whole-cell patch clamp experiments the influence of blocking, pre- or both pre- and postsynaptic glutamate transporters (GluT) on spontaneous and evoked postsynaptic currents (sEPSC and eEPSC), was examined by manipulating the content of intracellular solution. Suppressing GluT by non-transportable inhibitor TBOA (10 mu M) led to remarkable alteration of glutamate uptake process and was reflected in measurable changes of general properties of synaptic currents. Elimination of intracellular K(+) concentration required for glutamate transporter operation by using Cs(+)-based internal solution (postsynaptic GluTs are non-functional a priori), causes the deficient of presynaptic glutamate transporters. Applied in such conditions glutamate transporter inhibitor TBOA (10 mu M) affected the occurrence of synaptic event and thus unregulated the transmitter release. eEPSCs were generally suppressed both in amplitude (to 48.73 +/- 7.03% vs. control) and in success rate (R(suc)) by TBOA (from 91.1 +/- 7.5% in control to 79.57 +/- 13.2%). In contrast, with K(+)-based solution in patch pipette (pre- and postsynaptic GluT are intact), amplitude of eEPSC was substantially potentiated by pre-treatment with TBOA (152.1 +/- 11 %), whereas (R(suc)) was reduced to 79.8 +/- 8.3% in average. The identical reduction of event success rate as well as increased pair-pulse ratios (PPF ratio) for eEPSC in both cases indicates the effect of TBOA on presynaptic uptake. sEPSCs simultaneously recorded from neurons, showed the same pattern of regulation but with less potency, indicating the similar processes in most of excitatory synapses. In conclusion, presynaptic transporters are suggested to act mainly as negative feedback signal on presynaptic release and/or referred to vesicle refilling processes. (C) 2009 Elsevier Inc. All rights reserved.
引用
收藏
页码:53 / 60
页数:8
相关论文
共 50 条
  • [1] THE ROLE OF NEURONAL GLUTAMATE TRANSPORTERS IN SHAPING OF EXCITATORY POSTSYNAPTIC CURRENTS IN CA1 HIPPOCAMPAL NEURONS OF RAT
    Kondratskaya, Elena L.
    Krishtal, Oleg A.
    Akaike, Norio
    JOURNAL OF PHYSIOLOGICAL SCIENCES, 2009, 59 : 231 - 231
  • [2] Hippocampal learning activates both excitatory and inhibitory synaptic transmission in CA1 neurons
    Mitsushima, Dai
    Takahashi, Takuya
    JOURNAL OF PHYSIOLOGICAL SCIENCES, 2013, 63 : S107 - S107
  • [3] Synaptic transmission and excitability during hypoxia with inflammation and reoxygenation in hippocampal CA1 neurons
    Yang, Yoon-Sil
    Son, Sook Jin
    Choi, Joon Ho
    Rah, Jong-Cheol
    NEUROPHARMACOLOGY, 2018, 138 : 20 - 31
  • [4] Excitatory synaptic transmission is enhanced in aged hippocampal CA1 neurons by calcium chelators
    Ouanounou, A
    Zhang, L
    Charlton, MP
    Carlen, PL
    FASEB JOURNAL, 1996, 10 (03): : 3914 - 3914
  • [5] Effects of emodin on synaptic transmission in rat hippocampal CA1 pyramidal neurons in vitro
    Gu, JW
    Hasuo, H
    Takeya, M
    Akasu, T
    NEUROPHARMACOLOGY, 2005, 49 (01) : 103 - 111
  • [6] Metformin Enhances Excitatory Synaptic Transmission onto Hippocampal CA1 Pyramidal Neurons
    Chen, Wen-Bing
    Chen, Jiang
    Liu, Zi-Yang
    Luo, Bin
    Zhou, Tian
    Fei, Er-Kang
    BRAIN SCIENCES, 2020, 10 (10) : 1 - 11
  • [7] HALOTHANE EFFECTS OF GLUTAMATE RECEPTOR-MEDIATED SYNAPTIC CURRENTS IN HIPPOCAMPAL CA1 NEURONS
    PEROUANSKY, M
    BARANOV, D
    YAARI, Y
    ANESTHESIOLOGY, 1994, 81 (3A) : A1474 - A1474
  • [8] Effects of hemoglobin and its breakdown products on synaptic transmission in rat hippocampal CA1 neurons
    Yip, S
    Sastry, BR
    BRAIN RESEARCH, 2000, 864 (01) : 1 - 12
  • [9] DISRUPTION BY METHYLMERCURY OF MEMBRANE EXCITABILITY AND SYNAPTIC TRANSMISSION OF CA1 NEURONS IN HIPPOCAMPAL SLICES OF THE RAT
    YUAN, YK
    ATCHISON, WD
    TOXICOLOGY AND APPLIED PHARMACOLOGY, 1993, 120 (02) : 203 - 215
  • [10] Protracted postnatal development of inhibitory synaptic transmission in rat hippocampal area CA1 neurons
    Cohen, AS
    Lin, DD
    Coulter, DA
    JOURNAL OF NEUROPHYSIOLOGY, 2000, 84 (05) : 2465 - 2476