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光周期对西伯利亚仓鼠神经胶质细胞中糖原代谢、糖酵解和谷氨酰胺合成的调节提示神经胶质细胞在下丘脑功能中的新作用。

Photoperiodic regulation of glycogen metabolism, glycolysis, and glutamine synthesis in tanycytes of the Siberian hamster suggests novel roles of tanycytes in hypothalamic function.

机构信息

Rowett Institute for Nutrition and Health, University of Aberdeen, Aberdeen, United Kingdom.

出版信息

Glia. 2011 Nov;59(11):1695-705. doi: 10.1002/glia.21216. Epub 2011 Jul 18.

Abstract

The objective of this study is to investigate the impact of photoperiod on the temporal and spatial expression of genes involved in glucose metabolism in the brain of the seasonal mammal Phodopus sungorus (Siberian hamster). In situ hybridization was performed on brain sections obtained from male hamsters held in long photoperiod (high body weight and developed testes) or short photoperiod (reduced body weight with testicular regression). This analysis revealed upregulation in expression of genes involved in glycogen and glucose metabolism in short photoperiod and localized to the tanycyte layer of the third ventricle. On the basis of these data and a previously identified photoperiod-dependent increase in activity of neighboring hypothalamic neurons, we hypothesized that the observed expression changes may reflect alteration in either metabolic fuel or precursor neurotransmitter supply to surrounding neurons. Gene expression analysis was performed for genes involved in lactate and glutamate transport. This analysis showed that the gene for the lactate transporter MCT2 and glutamate transporter GLAST was decreased in the tanycyte layer in short photoperiod. Expression of mRNA for glutamine synthetase, the final enzyme in the synthesis of the neuronal neurotransmitter precursor, glutamine, was also decreased in short photoperiod. These data suggest a role for tanycytes in modulating glutamate concentrations and neurotransmitter supply in the hypothalamic environment.

摘要

本研究旨在探讨光周期对季节性哺乳动物黑线仓鼠(Phodopus sungorus)脑内参与葡萄糖代谢的基因时空表达的影响。我们对处于长光照周期(体重增加、睾丸发育)或短光照周期(体重减轻、睾丸退化)的雄性仓鼠的脑切片进行了原位杂交。该分析显示,短光照周期下与糖原和葡萄糖代谢相关的基因表达上调,并定位于第三脑室的室管膜细胞层。基于这些数据以及先前确定的光周期依赖性邻近下丘脑神经元活性增加,我们假设观察到的表达变化可能反映了代谢燃料或前体神经递质供应给周围神经元的改变。我们对参与乳酸和谷氨酸转运的基因进行了基因表达分析。该分析表明,短光照周期下,乳酸转运体 MCT2 和谷氨酸转运体 GLAST 的基因在室管膜细胞层中减少。谷氨酸合成酶(神经元神经递质前体谷氨酸的合成的最后一种酶)的 mRNA 表达也在短光照周期下减少。这些数据表明,室管膜细胞在调节下丘脑环境中的谷氨酸浓度和神经递质供应方面发挥作用。

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