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首页> 外文期刊>The Journal of Steroid Biochemistry and Molecular Biology >Kidney transcriptome reveals altered steroid homeostasis in NaS1 sulfate transporter null mice.
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Kidney transcriptome reveals altered steroid homeostasis in NaS1 sulfate transporter null mice.

机译:肾脏转录组揭示了NaS1硫酸盐转运蛋白缺失小鼠中类固醇稳态的改变。

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Sulfate is essential for human growth and development, and circulating sulfate levels are maintained by the NaS1 sulfate transporter which is expressed in the kidney. Previously, we generated a NaS1-null (Nas1(-/-)) mouse which exhibits hyposulfatemia. In this study, we investigated the kidney transcriptome of Nas1(-/-) mice. We found increased (n=25) and decreased (n=60) mRNA levels of genes with functional roles that include sulfate transport and steroid metabolism. Corticosteroid-binding globulin was the most up-regulated gene (110% increase) in Nas1(-/-) mouse kidney, whereas the sulfate anion transporter-1 (Sat1) was among the most down-regulated genes (>or=50% decrease). These findings led us to investigate the circulating and urinary steroid levels of Nas1(-/-) and Nas1(+/+) mice, which revealed reduced blood levels of corticosterone ( approximately 50% decrease), dehydroepiandrosterone (DHEA, approximately 30% decrease) and DHEA-sulfate ( approximately 40% decrease), and increased urinary corticosterone ( approximately 16-fold increase) and DHEA ( approximately 40% increase) levels in Nas1(-/-) mice. Our data suggest that NaS1 is essential for maintaining a normal metabolic state in the kidney and that loss of NaS1 function leads to reduced circulating steroid levels and increased urinary steroid excretion.
机译:硫酸盐对人类的生长和发育至关重要,而循环中的硫酸盐水平则通过在肾脏中表达的NaS1硫酸盐转运蛋白来维持。以前,我们生成了一个NaS1-null(Nas1(-/-))小鼠,表现出低硫酸盐血症。在这项研究中,我们调查了Nas1(-/-)小鼠的肾脏转录组。我们发现具有硫酸盐转运和类固醇代谢等功能性功能的基因的mRNA水平升高(n = 25),降低(n = 60)。皮质类固醇结合球蛋白是Nas1(-/-)小鼠肾脏中被上调最多的基因(增加110%),而硫酸盐阴离子转运蛋白1(Sat1)是被下调最严重的基因之一(>或= 50%减少)。这些发现使我们研究了Nas1(-/-)和Nas1(+ / +)小鼠的循环和尿中类固醇水平,这些结果显示皮质酮的血药浓度降低(降低约50%),脱氢表雄酮(DHEA)降低约30% )和DHEA-硫酸盐(减少约40%),并在Nas1(-/-)小鼠中增加尿皮质激素(增加约16倍)和DHEA(增加约40%)水平。我们的数据表明,NaS1对于维持肾脏的正常代谢状态至关重要,而NaS1功能的丧失会导致循环类固醇水平降低和尿类固醇排泄增加。

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