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Developmental regulation of glucose transporters GLUT3 GLUT4 and GLUT8 in the mouse cerebellar cortex

机译:小鼠小脑皮质葡萄糖转运蛋白GLUT3GLUT4和GLUT8的发育调控

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摘要

Glucose uptake into the mammalian nervous system is mediated by the family of facilitative glucose transporter proteins (GLUT). In this work we investigate how the expression of the main neuronal glucose transporters (GLUT3, GLUT4 and GLUT8) is modified during cerebellar cortex maturation. Our results reveal that the levels of the three transporters increase during the postnatal development of the cerebellum. GLUT3 localizes in the growing molecular layer and in the internal granule cell layer. However, the external granule cell layer, Purkinje cell cytoplasm and cytoplasm of the other cerebellar cells lack GLUT3 expression. GLUT4 and GLUT8 have partially overlapping patterns, which are detected in the cytoplasm and dendrites of Purkinje cells, and also in the internal granule cell layer where GLUT8 displays a more diffuse pattern. The differential localization of the transporters suggests that they play different roles in the cerebellum, although GLUT4 and GLUT8 could also perform some compensatory or redundant functions. In addition, the increase in the levels and the area expressing the three transporters suggests that these roles become more important as development advances. Interestingly, the external granule cells, which have been shown to express the monocarboxylate transporter MCT2, express none of the three main neuronal GLUTs. However, when these cells migrate inwardly to differentiate in the internal granule cells, they begin to produce GLUT3, GLUT4 and GLUT8, suggesting that the maturation of the cerebellar granule cells involves a switch in their metabolism in such a way that they start using glucose as they mature.
机译:葡萄糖吸收到哺乳动物神经系统中是由促进性葡萄糖转运蛋白家族(GLUT)介导的。在这项工作中,我们研究了小脑皮质成熟过程中主要神经元葡萄糖转运蛋白(GLUT3,GLUT4和GLUT8)的表达如何被修饰。我们的结果表明,三种转运蛋白的水平在小脑的产后发育过程中增加。 GLUT3位于生长的分子层和内部颗粒细胞层中。然而,外部颗粒细胞层,浦肯野细胞质和其他小脑细胞的细胞质缺乏GLUT3表达。 GLUT4和GLUT8具有部分重叠的模式,这在浦肯野细胞的细胞质和树突中以及在GLUT8表现出更弥漫模式的内部颗粒细胞层中都可以检测到。尽管GLUT4和GLUT8还可以执行一些补偿性或冗余性功能,但转运蛋白的差异化定位表明它们在小脑中扮演着不同的角色。此外,表达这三种转运蛋白的水平和面积的增加表明,随着发展的推进,这些作用变得越来越重要。有趣的是,已显示表达单羧酸盐转运蛋白MCT2的外部颗粒细胞不表达三种主要神经元GLUT。但是,当这些细胞向内迁移以在内部颗粒细胞中分化时,它们开始产生GLUT3,GLUT4和GLUT8,这表明小脑颗粒细胞的成熟涉及其新陈代谢的转变,以至于他们开始使用葡萄糖作为他们成熟了。

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