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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >High-affinity sodium-vitamin C co-transporters (SVCT) expression in embryonic mouse neurons.
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High-affinity sodium-vitamin C co-transporters (SVCT) expression in embryonic mouse neurons.

机译:胚胎小鼠神经元中的高亲和力钠维生素C共转运蛋白(SVCT)表达。

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摘要

The sodium-vitamin C co-transporters SVCT1 and SVCT2 transport the reduced form of vitamin C, ascorbic acid. High expression of the SVCT2 has been demonstrated in adult neurons and choroid plexus cells by in situ hybridization. Additionally, embryonic mesencephalic dopaminergic neurons express the SVCT2 transporter. However, there have not been molecular and kinetic analyses addressing the expression of SVCTs in cortical embryonic neurons. In this work, we confirmed the expression of a SVCT2-like transporter in different regions of the fetal mouse brain and in primary cultures of neurons by RT-PCR. Kinetic analysis of the ascorbic acid uptake demonstrated the presence of two affinity constants, 103 microM and 8 microM. A K(m) of 103 microM corresponds to a similar affinity constant reported for SVCT2, while the K(m) of 8 microM might suggest the expression of a very high affinity transporter for ascorbic acid. Our uptake analyses also suggest that neurons take up dehydroascorbic acid, the oxidized form of vitamin C, through the glucose transporters. We consider that the early expression of SVCTs transporters in neurons is important in the uptake of vitamin C, an essential molecule for the fetal brain physiology. Vitamin C that is found at high concentration in fetal brain may function in preventing oxidative free radical damage, because antioxidant radical enzymes mature only late in the developing brain.
机译:钠维生素C辅助转运蛋白SVCT1和SVCT2转运还原形式的维生素C抗坏血酸。 SVCT2的高表达已通过原位杂交在成年神经元和脉络丛细胞中得到证实。此外,胚胎中脑多巴胺能神经元表达SVCT2转运蛋白。但是,还没有分子和动力学分析来解决SVCTs在皮质胚胎神经元中的表达。在这项工作中,我们通过RT-PCR证实了SVCT2样转运蛋白在胎儿小鼠大脑的不同区域和神经元原代培养物中的表达。抗坏血酸摄取的动力学分析表明存在两个亲和常数103 microM和8 microM。 103 microM的K(m)对应于SVCT2报道的相似亲和常数,而8 microM的K(m)可能表明抗坏血酸的亲和力转运蛋白表达很高。我们的摄取分析还表明,神经元通过葡萄糖转运蛋白吸收了脱氢抗坏血酸,即维生素C的氧化形式。我们认为,SVCTs转运蛋白在神经元中的早期表达对于摄取维生素C是至关重要的,而维生素C是胎儿脑部生理的重要分子。胎儿脑中高浓度的维生素C可能起到防止氧化性自由基损害的作用,因为抗氧化剂自由基酶仅在发育中的大脑中成熟。

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