Synaptic Zn2+ homeostasis and its significance

被引:66
作者
Takeda, Atsushi [1 ]
Nakamura, Masatoshi [2 ]
Fujii, Hiroaki [2 ]
Tamano, Haruna [1 ]
机构
[1] Univ Shizuoka, Sch Pharmaceut Sci, Dept Bioorgan Chem, Suruga Ku, Shizuoka 4228526, Japan
[2] Univ Shizuoka, Sch Pharmaceut Sci, Dept Med Biochem, Suruga Ku, Shizuoka 4228526, Japan
关键词
KAINATE-INDUCED SEIZURES; DIETARY ZINC-DEFICIENCY; RECURRENT MAJOR DEPRESSION; LOWER SERUM ZINC; RAT-BRAIN; HIPPOCAMPAL NEUROGENESIS; MOUSE-BRAIN; YOUNG-RATS; ADULT RATS; TRANSPORTER EXPRESSION;
D O I
10.1039/c3mt20269k
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The decrease in serum zinc is linked to the hypothalamic-pituitary-adrenal (HPA) axis activation that increases the serum glucocorticoid level, indicating the importance of zinc homeostasis in physiological function. Zinc homeostasis in the brain is maintained through the blood-brain and blood-cerebrospinal fluid barriers. At young age, however, the increase in zinc concentration in the brain extracellular fluid along with brain development is suppressed under chronic zinc deficiency, followed by suppression of the increase in zinc in the synaptic vesicles that serves as the Zn2+ signal. Zn2+ is released from glutamatergic (zincergic) neuron terminals and serves as the Zn2+ signal in the intracellular (cytosol) compartment through calcium-permeable channels in addition to the extracellular compartment. Synaptic Zn2+ signals may participate in synaptic plasticity such as long-term potentiation (LTP) and cognitive function. Both the lack and excess of synaptic Zn2+ signals may affect them. Because there is limited evidence for the significance of Zn2+ signaling, the exact relationship between synaptic Zn2+ function and cognitive activity remains to be solved. Synaptic Zn2+ homeostasis seems to be controlled by the two major pools of Zn2+, i.e., the synaptic vesicle and the extracellular compartment, in the brain. Synaptic Zn2+ homeostasis is affected by the enhanced glutamatergic (zincergic) neuron activity. This paper summarizes the significance of synaptic Zn2+ homeostasis in zincergic neuron activity.
引用
收藏
页码:417 / 423
页数:7
相关论文
共 116 条
[91]   Role of zinc influx via AMPA/kainate receptor activation in metabotropic glutamate receptor-mediated calcium release [J].
Takeda, Atsushi ;
Fuke, Sayuri ;
Minami, Akira ;
Oku, Naoto .
JOURNAL OF NEUROSCIENCE RESEARCH, 2007, 85 (06) :1310-1317
[92]   Anxiety-like behavior of young rats after 2-week zinc deprivation [J].
Takeda, Atsushi ;
Tamano, Haruna ;
Kan, Fumika ;
Itoh, Hiromasa ;
Oku, Naoto .
BEHAVIOURAL BRAIN RESEARCH, 2007, 177 (01) :1-6
[93]   Responsiveness to kainate in young rats after 2-week zinc deprivation [J].
Takeda, Atsushi ;
Itoh, Hiromasa ;
Tamano, Haruna ;
Oku, Naoto .
BIOMETALS, 2006, 19 (05) :565-572
[94]   Proposed glucocorticoid-mediated zinc signaling in the hippocampus [J].
Takeda, Atsushi ;
Tamano, Haruna .
METALLOMICS, 2012, 4 (07) :614-618
[95]   Zinc signaling in the hippocampus and its relation to pathogenesis of depression [J].
Takeda, Atsushi .
JOURNAL OF TRACE ELEMENTS IN MEDICINE AND BIOLOGY, 2012, 26 (2-3) :80-84
[96]   Involvement of glucocorticoid-mediated Zn2+ signaling in attenuation of hippocampal CA1 LTP by acute stress [J].
Takeda, Atsushi ;
Suzuki, Miki ;
Tamano, Haruna ;
Takada, Shunsuke ;
Ide, Kazuki ;
Oku, Naoto .
NEUROCHEMISTRY INTERNATIONAL, 2012, 60 (04) :394-399
[97]   Transient Increase in Zn2+ in Hippocampal CA1 Pyramidal Neurons Causes Reversible Memory Deficit [J].
Takeda, Atsushi ;
Takada, Shunsuke ;
Nakamura, Masatoshi ;
Suzuki, Miki ;
Tamano, Haruna ;
Ando, Masaki ;
Oku, Naoto .
PLOS ONE, 2011, 6 (12)
[98]   Significance of serum glucocorticoid and chelatable zinc in depression and cognition in zinc deficiency [J].
Takeda, Atsushi ;
Tamano, Haruna ;
Ogawa, Taisuke ;
Takada, Shunsuke ;
Ando, Masaki ;
Oku, Naoto ;
Watanabe, Mitsugu .
BEHAVIOURAL BRAIN RESEARCH, 2012, 226 (01) :259-264
[99]   Zinc Signaling in the Hippocampus and Its Relation to Pathogenesis of Depression [J].
Takeda, Atsushi .
MOLECULAR NEUROBIOLOGY, 2011, 44 (02) :166-174
[100]   Zinc Signaling Through Glucocorticoid and Glutamate Signaling in Stressful Circumstances [J].
Takeda, Atsushi ;
Tamano, Haruna .
JOURNAL OF NEUROSCIENCE RESEARCH, 2010, 88 (14) :3002-3010