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Glut9 is a major regulator of urate homeostasis and its genetic inactivation induces hyperuricosuria and urate nephropathy

机译:Glut9是尿酸稳态的主要调节剂其基因失活可引起尿酸尿过多和尿酸肾病

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摘要

Elevated plasma urate levels are associated with metabolic, cardiovascular, and renal diseases. Urate may also form crystals, which can be deposited in joints causing gout and in kidney tubules inducing nephrolithiasis. In mice, plasma urate levels are controlled by hepatic breakdown, as well as, by incompletely understood renal processes of reabsorption and secretion. Here, we investigated the role of the recently identified urate transporter, Glut9, in the physiological control of urate homeostasis using mice with systemic or liver-specific inactivation of the Glut9 gene. We show that Glut9 is expressed in the basolateral membrane of hepatocytes and in both apical and basolateral membranes of the distal nephron. Mice with systemic knockout of Glut9 display moderate hyperuricemia, massive hyperuricosuria, and an early-onset nephropathy, characterized by obstructive lithiasis, tubulointerstitial inflammation, and progressive inflammatory fibrosis of the cortex, as well as, mild renal insufficiency. In contrast, liver-specific inactivation of the Glut9 gene in adult mice leads to severe hyperuricemia and hyperuricosuria, in the absence of urate nephropathy or any structural abnormality of the kidney. Together, our data show that Glut9 plays a major role in urate homeostasis by its dual role in urate handling in the kidney and uptake in the liver.
机译:血浆尿酸水平升高与代谢,心血管和肾脏疾病有关。尿酸盐也可形成晶体,可沉积在引起痛风的关节中和肾小管中,导致肾结石。在小鼠中,血浆尿酸水平是由肝分解以及不完全了解的肾脏重吸收和分泌过程控制的。在这里,我们使用系统性或肝脏特异性Glut9基因失活的小鼠,研究了最近确定的尿酸盐转运蛋白Glut9在尿酸盐动态平衡的生理控制中的作用。我们显示,Glut9在肝细胞的基底外侧膜以及远端肾单位的顶端和基底外侧膜中表达。系统性敲除Glut9的小鼠表现出中度高尿酸血症,大量尿尿过多和早发性肾病,其特征是阻塞性石尿症,肾小管间质炎症,皮质进行性炎性纤维化以及轻度肾功能不全。相反,在没有尿酸肾病或肾脏任何结构异常的情况下,成年小鼠中Glut9基因的肝脏特异性失活会导致严重的高尿酸血症和尿酸尿过多。总之,我们的数据表明Glut9在尿酸稳态中起主要作用,因为它在肾脏处理尿酸和肝脏吸收中起双重作用。

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