Temporo-spacial microanatomical distribution of the murine sodium-dependent ascorbic acid transporters Slc23a1 and Slc23a2 in the kidney throughout development.

P. Eck, C. Corpe, M. Levine
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引用次数: 4

Abstract

The two membrane transporters Slc23a1 and Slc23a2 mediate ascorbic acid uptake into cells. We recently determined the key role of Slc23a1 in renal re-absorption of ascorbic acid in a knockout mouse model. However, the renal spatial and temporal expression patterns of murine Slc23a1 and Slc23a2 are not defined. This study utilizes database evidence combined with experimental confirmation via in-situ hybridization to define the spatial and temporal expression of Slc23a1 in the murine kidney. Slc23a1 is expressed in the early proximal tubule, but not in its precursors during embryonic development, and exclusive proximal tubular expression persists throughout the animal's lifetime. In contrast, Slc23a2 is uniformly expressed in metabolic cell types such as stromal cells. The expression patterns appear to be conserved from rodent lineages to humans.
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小鼠钠依赖性抗坏血酸转运体Slc23a1和Slc23a2在肾脏发育过程中的时空显微解剖分布
两种膜转运蛋白Slc23a1和Slc23a2介导抗坏血酸进入细胞的摄取。我们最近在敲除小鼠模型中确定了Slc23a1在抗坏血酸肾重吸收中的关键作用。然而,小鼠Slc23a1和Slc23a2在肾脏的时空表达模式尚不明确。本研究利用数据库证据结合原位杂交实验证实,确定了Slc23a1在小鼠肾脏中的时空表达。Slc23a1在胚胎发育的早期近端小管中表达,但在其前体中不表达,并且在动物的一生中持续表达近端小管。相反,Slc23a2在代谢细胞类型如基质细胞中均匀表达。这种表达模式似乎从啮齿类动物谱系到人类都是保守的。
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