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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >The Glut1 and Glut4 glucose transporters are differentially expressed during perinatal and postnatal erythropoiesis.
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The Glut1 and Glut4 glucose transporters are differentially expressed during perinatal and postnatal erythropoiesis.

机译:Glut1和Glut4葡萄​​糖转运蛋白在围产期和产后红细胞生成过程中差异表达。

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Glucose is a major source of energy for living organisms, and its transport in vertebrates is a universally conserved property. Of all cell lineages, human erythrocytes express the highest level of the Glut1 glucose transporter with more than 200,000 molecules per cell. However, we recently reported that erythrocyte Glut1 expression is a specific trait of vitamin C-deficient mammalian species, comprising only higher primates, guinea pigs, and fruit bats. Here, we show that in all other tested mammalian species, Glut1 was transiently expressed in erythrocytes during the neonatal period. Glut1 was up-regulated during the erythroblast stage of erythroid differentiation and was present on the vast majority of murine red blood cells (RBCs) at birth. Notably though, Glut1 was not induced in adult mice undergoing anemia-induced erythropoiesis, and under these conditions, the up-regulation of a distinct transporter, Glut4, was responsible for an increased glucose transport. Sp3 and Sp1 transcriptions factors have been proposed to regulate Glut1 transcription, and we find that the concomitant repression of Glut1 and induction of Glut4 was associated with a significantly augmented Sp3/Sp1 ratio. Glucose transporter expression patterns in mice and human erythrocytes are therefore distinct. In mice, there is a postnatal switch from Glut1 to Glut4, with Glut4 further up-regulated under anemic conditions.
机译:葡萄糖是活生物体的主要能量来源,其在脊椎动物中的运输是一种普遍保存的财产。在所有细胞谱系中,人类红细胞表达的Glut1葡萄糖转运蛋白水平最高,每个细胞超过200,000个分子。但是,我们最近报道说,红细胞Glut1表达是缺乏维生素C的哺乳动物的一种特殊性状,仅包括高级灵长类动物,豚鼠和果蝠。在这里,我们表明,在所有其他测试的哺乳动物物种中,Glut1在新生儿期在红细胞中瞬时表达。在红系分化的成红细胞阶段,Glut1上调,并且在出生时绝大多数鼠红细胞(RBC)中都存在Glut1。但是,值得注意的是,在经历贫血诱导的红细胞生成的成年小鼠中未诱导Glut1,在这些条件下,独特的转运蛋白Glut4的上调导致葡萄糖转运增加。已经提出了Sp3和Sp1转录因子来调节Glut1转录,我们发现同时抑制Glut1和诱导Glut4与Sp3 / Sp1比率显着增加有关。因此,小鼠和人红细胞中的葡萄糖转运蛋白表达模式是不同的。在小鼠中,产后从Glut1切换到Glut4,在贫血条件下Glut4进一步上调。

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