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Impairment of tubuloglomerular feedback regulation of GFR in ecto-5′-nucleotidase/CD73–deficient mice

机译:ecto-5'-核苷酸酶/ CD73缺陷型小鼠肾小球肾小球反馈调节GFR的障碍

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摘要

Adenosine coordinates organ metabolism and blood supply, and it modulates immune responses. In the kidney it mediates the vascular response elicited by changes in NaCl concentration in the macula densa region of the nephron, thereby serving as an important regulator of GFR. To determine whether adenosine formation depends on extracellular nucleotide hydrolysis, we studied NaCl-dependent GFR regulation (tubuloglomerular feedback) in mice with targeted deletion of ecto-5′-nucleotidase/CD73 (e-5′NT/CD73), the enzyme responsible for adenosine formation from AMP. e-5′NT/CD73–/– mice were viable and showed no gross anatomical abnormalities. Blood pressure, blood and urine chemistry, and renal blood flow were not different between e-5′NT/CD73+/+ and e-5′NT/CD73–/– mice. e-5′NT/CD73–/– mice had a significantly reduced fall in stop flow pressure and superficial nephron glomerular filtration rate in response to a saturating increase of tubular perfusion flow. Furthermore, whereas tubuloglomerular feedback responses did not change significantly during prolonged loop of Henle perfusion in e-5′NT/CD73+/+ mice, a complete disappearance of the residual feedback response was noted in e-5′NT/CD73–/– mice over 10 minutes of perfusion. The contractile response of isolated afferent arterioles to adenosine was normal in e-5′NT/CD73–/– mice. We conclude that the generation of adenosine at the glomerular pole depends to a major extent on e-5′NT/CD73–mediated dephosphorylation of 5′-AMP, presumably generated from released ATP.
机译:腺苷协调器官的新陈代谢和血液供应,并调节免疫反应。在肾脏中,它介导肾单位黄斑部牙髓区域NaCl浓度变化引起的血管反应,从而成为GFR的重要调节剂。为了确定腺苷的形成是否依赖于细胞外核苷酸的水解,我们研究了小鼠中NaCl依赖性的GFR调节(肾小球肾小球反馈),该小鼠靶向缺失ecto-5'-核苷酸酶/ CD73(e-5'NT / CD73),该酶负责由AMP形成腺苷。 e-5′NT / CD73 – / –小鼠是活的,没有显示出明显的解剖异常。 e-5'NT / CD73 + / +和e-5'NT / CD73 – / –小鼠的血压,血液和尿液化学成分以及肾血流量没有差异。 e-5′NT / CD73 – / –小鼠响应于肾小管灌注流量的饱和增加,停止血流压力下降和肾单位肾小球肾小球滤过率明显降低。此外,尽管在e-5'NT / CD73 + / +小鼠的Henle灌注延长循环中肾小管肾小管反馈反应没有明显改变,但在e-5'NT / CD73 + / +小鼠中发现残余反馈反应完全消失超过10分钟的灌注。在e-5'NT / CD73 – / –小鼠中,分离的传入小动脉对腺苷的收缩反应是正常的。我们得出的结论是,肾小球极腺苷的生成在很大程度上取决于e-5'NT / CD73介导的5'-AMP的去磷酸化,大概是由释放的ATP产生的。

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