首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Neuronal uptake and metabolism of glycerol and the neuronal expression of mitochondrial glycerol-3-phosphate dehydrogenase.
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Neuronal uptake and metabolism of glycerol and the neuronal expression of mitochondrial glycerol-3-phosphate dehydrogenase.

机译:甘油的神经元摄取和代谢以及线粒体-3-磷酸甘油脱氢酶的神经元表达。

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摘要

Glycerol is effective in the treatment of brain oedema but it is unclear if this is due solely to osmotic effects of glycerol or whether the brain may metabolize glycerol. We found that intracerebral injection of [14C]glycerol in rat gave a higher specific activity of glutamate than of glutamine, indicating neuronal metabolism of glycerol. Interestingly, the specific activity of GABA became higher than that of glutamate. NMR spectroscopy of brains of mice given 150 micromol [U-13C]glycerol (0.5 m i.v.) confirmed this predominant labelling of GABA, indicating avid glycerol metabolism in GABAergic neurones. Uptake of [14C]glycerol into cultured cerebellar granule cells was inhibited by Hg2+, suggesting uptake through aquaporins, whereas Hg2+ stimulated glycerol uptake into cultured astrocytes. The neuronal metabolism of glycerol, which was confirmed in experiments with purified synaptosomes and cultured cerebellar granule cells, suggested neuronal expression of glycerol kinase and some isoform of glycerol-3-phosphate dehydrogenase. Histochemically, we demonstrated mitochondrial glycerol-3-phosphate dehydrogenase in neurones, whereas cytosolic glycerol-3-phosphate dehydrogenase was three to four times more active in white matter than in grey matter, reflecting its selective expression in oligodendroglia. The localization of mitochondrial and cytosolic glycerol-3-phosphate dehydrogenases in different cell types implies that the glycerol-3-phosphate shuttle is of little importance in the brain.
机译:甘油可有效治疗脑水肿,但尚不清楚这是否仅由于甘油的渗透作用或大脑是否可代谢甘油。我们发现,大鼠脑内注射[14C]甘油比谷氨酰胺具有更高的谷氨酸比活性,表明甘油的神经元代谢。有趣的是,GABA的比活性变得高于谷氨酸。给予150微摩尔[U-13C]甘油(0.5 m i.v.)的小鼠大脑的NMR光谱证实了GABA的这一主要标记,表明GABA能神经元中甘油的代谢异常。 Hg2 +抑制了[14C]甘油对培养的小脑颗粒细胞的吸收,这表明其通过水通道蛋白吸收,而Hg2 +刺激了甘油对培养的星形胶质细胞的吸收。在纯化的突触小体和培养的小脑颗粒细胞的实验中证实了甘油的神经元代谢,表明甘油激酶的神经元表达和3-磷酸甘油脱氢酶的某些同工型。组织化学方面,我们证明了神经元中的线粒体3-磷酸甘油脱氢酶,而胞质3-磷酸甘油脱氢酶在白质中的活性是在灰质中的三至四倍,这反映了其在少突胶质细胞中的选择性表达。线粒体和胞质3-磷酸甘油脱氢酶在不同细胞类型中的定位表明3-磷酸甘油穿梭在大脑中的重要性不高。

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