Dou Wenkai, Thompson-Jaeger Sandra, Laulederkind Stanley J F, Becker John W, Montgomery Julia, Ruiz-Bustos Eduardo, Hasty David L, Ballou Leslie R, Eastman P Scott, Srichai Betsy, Breyer Matthew D, Raghow Rajendra
Department of Veterans Affairs Medical Center, Memphis, TN 38104, USA.
Am J Physiol Renal Physiol. 2005 Jul;289(1):F49-60. doi: 10.1152/ajprenal.00134.2004. Epub 2005 Mar 1.
Mice lacking a functional cyclooxygenase-2 (COX-2) gene develop abnormal kidneys that contain hypoplastic glomeruli and reduced proximal tubular mass, and they often die of renal failure. A comparison of kidney-specific gene expression between wild-type and COX-2-deficient mice by cDNA microarrays revealed that although more than 500 mRNAs were differentially expressed between the two strains of mice depending on their ages, the genes encoding pre-pro-epidermal growth factor (pre-pro-EGF) and Tamm-Horsfall protein (THP)/uromodulin were aberrantly expressed in the kidneys of COX-2 -/- mice at all stages of their development. Downregulation of EGF could potentially affect renal development, and THP/uromodulin gene has been implicated in abnormal kidney development and end-stage renal failure in humans. We assessed in detail mechanism of defective THP/uromodulin gene expression and its potential consequences in COX-2-deficient mice. Consistent with the microarray data, the steady-state levels of THP/uromodulin mRNA were severely reduced in the COX-2 -/- kidney. Furthermore, reduced expression of renal THP/uromodulin, as assessed by Western blot and immunohistological methods, was closely corroborated by a corresponding decline in the urinary secretion of THP/uromodulin in COX-2 -/- mice. Finally, we demonstrate that the bladders of COX-2 -/- mice, in contrast to those of the wild-type mice, are highly susceptible to colonization by uropathogenic Escherichia coli.
缺乏功能性环氧化酶-2(COX-2)基因的小鼠会发育出异常的肾脏,其中包含发育不全的肾小球和减少的近端肾小管质量,并且它们常常死于肾衰竭。通过cDNA微阵列比较野生型和COX-2缺陷型小鼠之间的肾脏特异性基因表达发现,尽管根据年龄不同,两株小鼠之间有500多种mRNA存在差异表达,但编码前表皮生长因子(pre-pro-EGF)和Tamm-Horsfall蛋白(THP)/尿调节蛋白的基因在COX-2 -/-小鼠发育的各个阶段在肾脏中均异常表达。EGF的下调可能会影响肾脏发育,并且THP/尿调节蛋白基因与人类肾脏发育异常和终末期肾衰竭有关。我们详细评估了COX-2缺陷型小鼠中THP/尿调节蛋白基因表达缺陷的机制及其潜在后果。与微阵列数据一致,COX-2 -/-肾脏中THP/尿调节蛋白mRNA的稳态水平严重降低。此外,通过蛋白质印迹和免疫组织学方法评估,肾脏THP/尿调节蛋白表达的降低与COX-2 -/-小鼠中THP/尿调节蛋白的尿分泌相应下降密切相关。最后,我们证明,与野生型小鼠相比,COX-2 -/-小鼠的膀胱极易被尿路致病性大肠杆菌定植。