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II型代谢型谷氨酸受体的激活可阻断海马苔藓纤维释放锌。

Activation of group II metabotropic glutamate receptors blocks zinc release from hippocampal mossy fibers.

作者信息

Matias Carlos M, Dionísio Jose C, Saggau Peter, Quinta-Ferreira Maria Emilia

机构信息

Center for Neurosciences of Coimbra, University of Coimbra, 3004-516, Coimbra, Portugal.

Department of Physics, School of Science and Technology, University of Trás-os-montes and Alto Douro (UTAD), Quinta dos Prados, 5000-911, Vila Real, Portugal.

出版信息

Biol Res. 2014 Dec 18;47(1):73. doi: 10.1186/0717-6287-47-73.

Abstract

BACKGROUND

The hippocampal CA3 area contains large amounts of vesicular zinc in the mossy fiber terminals which is released during synaptic activity, depending on presynaptic calcium. Another characteristic of these synapses is the presynaptic localization of high concentrations of group II metabotropic glutamate receptors, specifically activated by DCG-IV. Previous work has shown that DCG-IV affects only mossy fiber-evoked responses but not the signals from associational-commissural afferents, blocking mossy fiber synaptic transmission. Since zinc is released from mossy fibers even for single stimuli and it is generally assumed to be co-released with glutamate, the aim of the work was to investigate the effect of DCG-IV on mossy fiber zinc signals.

RESULTS

Studies were performed using the membrane-permeant fluorescent zinc probe TSQ, and indicate that DCG-IV almost completely abolishes mossy fiber zinc changes as it does with synaptic transmission.

CONCLUSIONS

Zinc signaling is regulated by the activation of type II metabotropic receptors, as it has been previously shown for glutamate, further supporting the corelease of glutamate and zinc from mossy fibers.

摘要

背景

海马CA3区在苔藓纤维终末含有大量囊泡锌,其在突触活动期间释放,依赖于突触前钙。这些突触的另一个特征是高浓度II型代谢型谷氨酸受体的突触前定位,其被DCG-IV特异性激活。先前的研究表明,DCG-IV仅影响苔藓纤维诱发的反应,而不影响联合-连合传入纤维的信号,阻断苔藓纤维突触传递。由于即使对于单个刺激,锌也从苔藓纤维释放,并且通常认为它与谷氨酸共同释放,因此本研究的目的是研究DCG-IV对苔藓纤维锌信号的影响。

结果

使用膜通透性荧光锌探针TSQ进行研究,结果表明DCG-IV几乎完全消除了苔藓纤维锌的变化,就像它对突触传递的作用一样。

结论

锌信号传导受II型代谢型受体激活的调节,正如先前对谷氨酸所显示的那样,进一步支持谷氨酸和锌从苔藓纤维共同释放。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc60/4289587/c164b6b69ca6/40659_2014_60_Fig1_HTML.jpg

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