Department of Internal Medicine, University of Utah and Veterans Affairs Medical Center, Salt Lke City, Utah;
Institute of Hypertension, Sun Yat-sen University School of Medicine, Guangzhou, China;
Am J Physiol Renal Physiol. 2014 Aug 15;307(4):F388-95. doi: 10.1152/ajprenal.00512.2013. Epub 2014 Mar 19.
Cyclooxygenase 2 (COX-2) has an established role in postnatal kidney development. 15-Hydroxyprostaglandin dehydrogenase (15-PGDH) is recently identified as an endogenous inhibitor of COX-2, limiting the production of COX-2-derived prostanoids in several pathological conditions. The present study was undertaken to examine the regulation of renal 15-PGDH expression during postnatal kidney development in rats compared with COX-2. qRT-PCR and immunoblotting demonstrated that 15-PGDH mRNA and protein in the kidney were present in neonates, peaked in the second postnatal week, and then declined sharply to very low level in adulthood. Immunostaining demonstrated that at the second postnatal week, renal 15-PGDH protein was predominantly found in the proximal tubules stained positive for Na/H exchanger 3 and brush borders (periodic acid-Schiff), whereas COX-2 protein was restricted to macular densa and adjacent thick ascending limbs. Interestingly, in the fourth postnatal week, 15-PGDH protein was redistributed to thick ascending limbs stained positive for the Na-K-2Cl cotransporter. After 6 wk of age, 15-PGDH protein was found in the granules in subsets of the proximal tubules. Overall, these results support a possibility that 15-PGDH may regulate postnatal kidney development through interaction with COX-2.
环氧化酶 2(COX-2)在出生后肾脏发育中具有明确的作用。15-羟前列腺素脱氢酶(15-PGDH)最近被确定为 COX-2 的内源性抑制剂,在几种病理条件下限制 COX-2 衍生的前列腺素的产生。本研究旨在探讨与 COX-2 相比,大鼠出生后肾脏发育过程中肾 15-PGDH 表达的调节。qRT-PCR 和免疫印迹表明,肾脏中 15-PGDH mRNA 和蛋白在新生儿中存在,在出生后第 2 周达到峰值,然后急剧下降至成年期的极低水平。免疫染色表明,在出生后第 2 周,肾 15-PGDH 蛋白主要存在于近端小管中,这些近端小管对 Na/H 交换器 3 和刷状缘(过碘酸希夫)呈阳性染色,而 COX-2 蛋白则局限于斑状致密部和相邻的升支粗段。有趣的是,在出生后第 4 周,15-PGDH 蛋白重新分布到升支粗段,对 Na-K-2Cl 共转运体呈阳性染色。6 周龄后,15-PGDH 蛋白在近端小管的亚群中颗粒内被发现。总的来说,这些结果支持 15-PGDH 可能通过与 COX-2 相互作用来调节出生后肾脏发育的可能性。