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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Enhancement of extracellular glutamate scavenge system in injured motoneurons.
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Enhancement of extracellular glutamate scavenge system in injured motoneurons.

机译:增强运动神经元细胞外谷氨酸清除系统。

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An increase in glutamine synthetase (GS) mRNA expression after peripheral motor nerve injury was demonstrated by differential display PCR using single arbitrary primer coupled with in situ hybridization screening called in situ display. Differential display PCR was carried out to compare differences in mRNA expression between axotomized (6 h after the transection) and normal hypoglossal nuclei in mice. Several gene fragments were increased after nerve injury; one was identified as GS. Subsequent emulsion autoradiography of hybridization tissue sections revealed that the increase in GS mRNA was observed in injured motoneurons. As GS is a key enzyme participating in the metabolism of the major excitatory neurotransmitter glutamate, we examined the significance of increased GS expression on glutamate-uptake kinetics. GS-transfected human embryonic kidney cells showed an up-regulation in glutamate-uptake kinetics. Therefore, newly expressed GS together with an increased expression of the neuronal glutamate transporter EAAC1 in the injured motoneurons accelerates glutamate uptake. The present results may suggest that the glutamate-uptake system involving the neuronal glutamate transporter and GS in injured neurons is enhanced so as to provide resistance against neurotoxic glutamate accumulation during the early process of nerve regeneration.
机译:通过差异展示PCR,使用单个任意引物结合称为原位展示的原位杂交筛选,证明了周围运动神经损伤后谷氨酰胺合成酶(GS)mRNA表达的增加。进行差异展示PCR,以比较在小鼠中,经轴切术(横切后6 h)和正常舌下核之间的mRNA表达差异。神经损伤后几个基因片段增加;一个被确定为GS。随后的杂交组织切片乳胶放射自显影显示,在受伤的运动神经元中观察到GS mRNA的增加。由于GS是参与主要兴奋性神经递质谷氨酸代谢的关键酶,因此我们研究了GS表达增加对谷氨酸吸收动力学的重要性。 GS转染的人胚胎肾细胞显示谷氨酸摄取动力学上调。因此,在受伤的运动神经元中新表达的GS和神经元谷氨酸转运蛋白EAAC1的表达增加会加速谷氨酸的摄取。目前的结果可能表明,涉及神经元谷氨酸转运蛋白和受损神经元中的GS的谷氨酸摄取系统得到了增强,从而在神经再生的早期过程中提供了对神经毒性谷氨酸积累的抵抗力。

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