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1
Evidence for chelatable zinc in the extracellular space of the hippocampus, but little evidence for synaptic release of Zn.海马细胞外空间中存在可螯合锌的证据,但锌突触释放的证据很少。
J Neurosci. 2003 Jul 30;23(17):6847-55. doi: 10.1523/JNEUROSCI.23-17-06847.2003.
2
Fluorescence imaging study of extracellular zinc at the hippocampal mossy fiber synapse.海马苔藓纤维突触处细胞外锌的荧光成像研究。
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3
Selective zinc sensor molecules with various affinities for Zn2+, revealing dynamics and regional distribution of synaptically released Zn2+ in hippocampal slices.对Zn2+具有不同亲和力的选择性锌传感器分子,揭示海马切片中突触释放的Zn2+的动力学和区域分布。
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4
Intracellular Zn2+ accumulation contributes to synaptic failure, mitochondrial depolarization, and cell death in an acute slice oxygen-glucose deprivation model of ischemia.在急性脑片氧糖剥夺缺血模型中,细胞内锌离子蓄积会导致突触功能障碍、线粒体去极化及细胞死亡。
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Nitric oxide generators produce accumulation of chelatable zinc in hippocampal neuronal perikarya.一氧化氮生成剂会导致海马神经元胞体中可螯合锌的积累。
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6
Relationship between zinc and neurotransmitters released into the amygdalar extracellular space.锌与释放到杏仁核细胞外间隙的神经递质之间的关系。
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7
Rapid translocation of Zn(2+) from presynaptic terminals into postsynaptic hippocampal neurons after physiological stimulation.生理刺激后,锌离子(Zn(2+))从突触前终末快速转运至突触后海马神经元。
J Neurophysiol. 2001 Nov;86(5):2597-604. doi: 10.1152/jn.2001.86.5.2597.
8
Significance of synaptic Zn signaling in zincergic and non-zincergic synapses in the hippocampus in cognition.海马体中锌能和非锌能突触中的突触锌信号在认知中的意义。
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9
Negative modulation of presynaptic activity by zinc released from Schaffer collaterals.从谢弗侧支释放的锌对突触前活动的负向调节。
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10
Response of hippocampal mossy fiber zinc to excessive glutamate release.海马苔藓纤维锌对过量谷氨酸释放的反应。
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Selenoprotein P Regulates Synaptic Zinc and Reduces Tau Phosphorylation.硒蛋白P调节突触锌并减少tau蛋白磷酸化。
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Zinc enhances hippocampal long-term potentiation at CA1 synapses through NR2B containing NMDA receptors.锌通过包含 NR2B 的 NMDA 受体增强 CA1 突触的海马长时程增强。
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8
Metalloneurochemistry and the Pierian Spring: 'Shallow Draughts Intoxicate the Brain'.金属神经化学与皮埃里亚圣泉:“浅尝辄止令人头脑迷醉”
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The Free Zinc Concentration in the Synaptic Cleft of Artificial Glycinergic Synapses Rises to At least 1 μM.人工甘氨酸能突触突触间隙中的游离锌浓度至少升高至1微摩尔。
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10
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本文引用的文献

1
Synaptic vesicle retrieval: still time for a kiss.突触小泡回收:仍有亲吻的时刻。
Nat Cell Biol. 2002 Nov;4(11):E245-8. doi: 10.1038/ncb1102-e245.
2
Single and multiple vesicle fusion induce different rates of endocytosis at a central synapse.单个囊泡融合和多个囊泡融合在中枢突触处诱导不同的内吞速率。
Nature. 2002 May 30;417(6888):555-9. doi: 10.1038/417555a.
3
Detection and imaging of zinc secretion from pancreatic beta-cells using a new fluorescent zinc indicator.使用新型荧光锌指示剂检测胰腺β细胞锌分泌并进行成像
J Am Chem Soc. 2002 Feb 6;124(5):776-8. doi: 10.1021/ja011774y.
4
Zinc-enriched GABAergic terminals in mouse spinal cord.小鼠脊髓中富含锌的γ-氨基丁酸能终末
Brain Res. 2001 Dec 7;921(1-2):165-72. doi: 10.1016/s0006-8993(01)03114-6.
5
Rapid translocation of Zn(2+) from presynaptic terminals into postsynaptic hippocampal neurons after physiological stimulation.生理刺激后,锌离子(Zn(2+))从突触前终末快速转运至突触后海马神经元。
J Neurophysiol. 2001 Nov;86(5):2597-604. doi: 10.1152/jn.2001.86.5.2597.
6
Induction of mossy fiber --> Ca3 long-term potentiation requires translocation of synaptically released Zn2+.苔藓纤维诱导的Ca3长期增强需要突触释放的Zn2+的转位。
J Neurosci. 2001 Oct 15;21(20):8015-25. doi: 10.1523/JNEUROSCI.21-20-08015.2001.
7
Seeing the wood through the trees: a review of techniques for distinguishing green fluorescent protein from endogenous autofluorescence.透过树木见森林:区分绿色荧光蛋白与内源性自发荧光技术的综述
Anal Biochem. 2001 Apr 15;291(2):175-97. doi: 10.1006/abio.2000.5006.
8
Fluorescent detection of Zn(2+)-rich vesicles with Zinquin: mechanism of action in lipid environments.用锌喹检测富含锌离子的囊泡:在脂质环境中的作用机制
Biophys J. 2001 Mar;80(3):1538-46. doi: 10.1016/S0006-3495(01)76126-7.
9
Seizures and neuronal damage in mice lacking vesicular zinc.缺乏囊泡锌的小鼠的癫痫发作和神经元损伤
Epilepsy Res. 2000 Apr;39(2):153-69. doi: 10.1016/s0920-1211(99)00121-7.
10
Evidence that synaptically-released zinc contributes to neuronal injury after traumatic brain injury.有证据表明,突触释放的锌在创伤性脑损伤后导致神经元损伤。
Brain Res. 2000 Jan 10;852(2):268-73. doi: 10.1016/s0006-8993(99)02095-8.

海马细胞外空间中存在可螯合锌的证据,但锌突触释放的证据很少。

Evidence for chelatable zinc in the extracellular space of the hippocampus, but little evidence for synaptic release of Zn.

作者信息

Kay Alan R

机构信息

Biological Sciences, University of Iowa, Iowa City, Iowa 52242, USA.

出版信息

J Neurosci. 2003 Jul 30;23(17):6847-55. doi: 10.1523/JNEUROSCI.23-17-06847.2003.

DOI:10.1523/JNEUROSCI.23-17-06847.2003
PMID:12890779
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6740710/
Abstract

Zinc colocalizes with glutamate in the synaptic vesicles of certain glutamatergic vesicles in the mammalian brain. Here, I introduce a method for detecting Zn in the extracellular space of brain slices and another method for detecting the passage of Zn out of the slice. In both cases, the fluorimetric Zn probe FluoZin-3 is used in conjunction with a slow Zn chelator, Ca-EDTA, to reduce background fluorescence. In addition, a new Zn chelator, ethylenediiminodi-2-pentanedioic acid, with little affinity for Ca or Mg is introduced. These tools are then used to show that little Zn (approximately 2 nm) is released during the course of synaptic transmission into the extracellular space. However, when hippocampal slices are subjected to a high potassium stimulus (50 mM) combined with an increase in osmolarity, Zn is externalized in the Timm's-stained areas (approximately 6 nm). This stimulus also leads to even greater Zn elevations in area CA1 that is only weakly stained by the Timm's method. Nevertheless, even under these conditions, little if any Zn makes its way out of the slices. I present evidence for a layer of Zn in the extracellular space that maps onto the Timm's stained region of the hippocampus. This Zn veneer appears to be loosely associated with molecules in the extracellular space and may be the raison d'être for vesicular Zn.

摘要

在哺乳动物大脑中,锌与谷氨酸在某些谷氨酸能突触小泡中共定位。在此,我介绍一种检测脑片细胞外空间中锌的方法以及另一种检测锌从脑片中流出的方法。在这两种情况下,荧光锌探针FluoZin-3都与一种缓慢的锌螯合剂Ca-EDTA联合使用,以减少背景荧光。此外,还引入了一种对钙或镁亲和力很小的新型锌螯合剂乙二亚氨基二-2-戊二酸。然后利用这些工具表明,在突触传递过程中,很少有锌(约2纳米)释放到细胞外空间。然而,当海马脑片受到高钾刺激(50毫摩尔)并伴有渗透压升高时,锌在Timm染色区域(约6纳米)被外化。这种刺激还会导致在Timm法染色较弱的CA1区域锌水平进一步升高。尽管如此,即使在这些条件下,也几乎没有锌从脑片中流出。我提供了证据证明在细胞外空间存在一层锌,该锌层与海马体的Timm染色区域相对应。这种锌表层似乎与细胞外空间中的分子松散结合,可能是囊泡锌存在的原因。