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Re: Hyperoxaluric rats do not exhibit Alterations in renal expression patterns of Slc26a1 (SAT1) mRNA or protein

机译:回复:高草酸尿大鼠未表现出Slc26a1(SAT1)mRNA或蛋白质的肾脏表达模式改变

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摘要

Little is known about oxalate transport in renal epithelia under basal conditions, let alone in hyperoxaluria when the capacity for renal oxalate excretion is increased. Sulfate anion transporter 1 (SAT1, Slc26al) is considered to be a major basolateral anion-oxalate exchanger in the proximal tubule and we hypothesized its expression may correlate with urinary oxalate excretion. We quantified changes in the renal expression of SAT1 mRNA and protein in two rat models, one with hyperoxaluria (HYP) and one with renal insufficiency (HRF) induced by hyperoxaluria. The hyperoxaluria observed in the HYP group could not simply be ascribed to changes in SAT1 mRNA or protein abundance. However, when hyperoxaluria was accompanied by renal insufficiency, significant reductions in SAT1 mRNA and protein were detected in medullary and papillary tissue. Together, the results indicate that transcriptional modulation of the SAT1 gene is not a significant component of the hyperoxaluria observed in these rat models.
机译:关于在基础条件下肾脏上皮中草酸盐的转运知之甚少,更不用说在高草酸尿症中增加草酸肾排泄能力。硫酸根阴离子转运蛋白1(SAT1,Slc26al)被认为是近端肾小管中主要的基底外侧阴离子-草酸交换剂,我们假设其表达可能与尿草酸的排泄相关。我们量化了两种大鼠模型中肾脏SAT1 mRNA和蛋白表达的变化,一种是高草酸尿症(HYP),另一种是高草酸尿症引起的肾功能不全(HRF)。在HYP组观察到的高草酸尿症不能简单地归因于SAT1 mRNA或蛋白质丰度的变化。但是,当高草酸尿症伴有肾功能不全时,在髓样和乳头状组织中检测到SAT1 mRNA和蛋白显着降低。总之,结果表明,在这些大鼠模型中观察到的SAT1基因的转录调节不是高草酸尿的重要组成部分。

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    《The Journal of Urology》 |2013年第1期|共1页
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    AssimosD.;

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  • 入库时间 2022-08-19 15:17:28

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