首页> 美国卫生研究院文献>The Journal of Neuroscience >Cleavage of the Vesicular GABA Transporter under Excitotoxic Conditions Is Followed by Accumulation of the Truncated Transporter in Nonsynaptic Sites
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Cleavage of the Vesicular GABA Transporter under Excitotoxic Conditions Is Followed by Accumulation of the Truncated Transporter in Nonsynaptic Sites

机译:在兴奋性毒性条件下对囊泡GABA转运蛋白的切割后在非突触部位积累了截短的转运蛋白。

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摘要

GABA is the major inhibitory neurotransmitter in the CNS and changes in GABAergic neurotransmission affect the overall activity of neuronal networks. The uptake of GABA into synaptic vesicles is mediated by the vesicular GABA transporter (VGAT), and changes in the expression of the transporter directly regulate neurotransmitter release. In this work we investigated the changes in VGAT protein levels during ischemia and in excitotoxic conditions, which may affect the demise process. We found that VGAT is cleaved by calpains following excitotoxic stimulation of hippocampal neurons with glutamate, giving rise to a stable truncated cleavage product (tVGAT). VGAT cleavage was also observed after transient middle cerebral artery occlusion in mice, a cerebral ischemia model, and following intrahippocampal injection of kainate, but no effect was observed in transgenic mice overexpressing calpastatin, a calpain inhibitor. Incubation of isolated cerebrocortical synaptic vesicles with recombinant calpain also induced the cleavage of VGAT and formation of stable tVGAT. Immunoblot experiments using antibodies targeting different regions of VGAT and N-terminal sequencing analysis showed that calpain cleaves the transporter in the N-terminal region, at amino acids 52 and 60. Immunocytochemistry of GABAergic striatal neurons expressing GFP fusion proteins with the full-length VGAT or tVGAT showed that cleavage of the transporter induces a loss of synaptic delivery, leading to a homogeneous distribution of the protein along neurites. Our results show that excitotoxicity downregulates full-length VGAT, with a concomitant generation of tVGAT, which is likely to affect GABAergic neurotransmission and may influence cell death during ischemia.
机译:GABA是中枢神经系统的主要抑制性神经递质,而GABA能神经传递的变化影响神经元网络的整体活动。 GABA吸收到突触小泡中是由水泡GABA转运蛋白(VGAT)介导的,转运蛋白表达的变化直接调节神经递质的释放。在这项工作中,我们调查了缺血期间和兴奋性毒性条件下VGAT蛋白水平的变化,这可能会影响死亡过程。我们发现,谷氨酸对海马神经元进行兴奋性毒性刺激后,钙蛋白酶将VGAT裂解,从而产生稳定的截短的裂解产物(tVGAT)。在小鼠短暂性中脑动脉闭塞后,大脑缺血模型中以及海马内注射海藻酸盐后,也观察到VGAT裂解,但在过表达钙蛋白酶抑制剂钙蛋白酶的转基因小鼠中未观察到效果。分离的脑皮质突触囊泡与重组钙蛋白酶的孵育也诱导了VGAT的裂解和稳定的tVGAT的形成。使用针对VGAT不同区域的抗体进行的免疫印迹实验和N端测序分析表明,钙蛋白酶在N端区域的52和60位氨基酸处切割转运蛋白。GABA能级纹状体神经元的免疫细胞化学表达与全长VGAT的GFP融合蛋白或tVGAT表明转运蛋白的裂解引起突触传递的损失,导致蛋白质沿神经突的均匀分布。我们的结果表明,兴奋性毒性下调了全长VGAT,并伴随产生了tVGAT,这可能会影响GABA能神经传递,并可能影响缺血期间的细胞死亡。

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