首页> 外文OA文献 >Segmental and complementary expression of L-serine biosynthetic enzyme 3-phosphoglycerate dehydrogenase and neutral amino acid transporter ASCT1 in the mouse kidney.
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Segmental and complementary expression of L-serine biosynthetic enzyme 3-phosphoglycerate dehydrogenase and neutral amino acid transporter ASCT1 in the mouse kidney.

机译:L-丝氨酸生物合成酶3-磷酸甘油酸脱氢酶和中性氨基酸转运蛋白ASCT1在小鼠肾脏中的分段和互补表达。

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摘要

3-Phosphoglycerate dehydrogenase (Phgdh) is the initial step enzyme in the phosphorylated pathway of L-serine biosynthesis. We have previously revealed in the brain that Phgdh is preferentially expressed in glial cells, but not in neurons, and that glia-borne L-serine exerts strong neurotrophic actions to neuronal survive, differentiation, and development. To investigate whether such an L-serine-meditated intercellular relationship is constructed in peripheral organs and tissues, we examined the kidney, which is one of the organs with the highest expression of Phgdh mRNA in the body. We found that Phgdh was distributed highly in the renal papilla and inner layer of the outer zone and moderately in the cortex, whereas it was almost negative in the outer layer of the outer zone. This heterogeneous distribution was due to selective expression in distinct tubular segments, i.e., the Bowman's capsule, proximal tubule, and thin limbs of the Henle's loop. Interestingly, neutral amino acid transporter ASCT1, which preferentially transports alanine, serine, cysteine, and threonine, was selectively expressed in Phgdh-negative tubular segments, i.e., the distal tubule and collecting duct. Therefore, either Phgdh or ASCT1 is provided to each segment of renal tubules, suggesting that metabolic interplay mediated by L-serine biosynthesis and supply may exist in the kidney too.
机译:3-磷酸​​甘油酸脱氢酶(Phgdh)是L-丝氨酸生物合成磷酸化途径中的第一步酶。我们先前曾在大脑中揭示,Phgdh在神经胶质细胞中优先表达,但在神经元中不表达,而胶质细胞生成的L-丝氨酸对神经元的存活,分化和发育具有强大的神经营养作用。为了研究在周围器官和组织中是否构建了这种L-丝氨酸修饰的细胞间关系,我们检查了肾脏,肾脏是人体中Phgdh mRNA表达最高的器官之一。我们发现,Phgdh在肾乳头和外层内层中分布较高,在皮层中中等分布,而在外区外层中几乎呈负值。这种异质分布是由于在不同的管状节段中的选择性表达,即鲍曼氏囊,近端小管和亨利环的细肢。有趣的是,优先运送丙氨酸,丝氨酸,半胱氨酸和苏氨酸的中性氨基酸转运蛋白ASCT1在Phgdh阴性肾小管区段,即远端小管和收集管中选择性表达。因此,在肾小管的每个节段都提供了Phgdh或ASCT1,这表明在肾脏中也可能存在L-丝氨酸生物合成和供应介导的代谢相互作用。

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