Renal medullary gene expression in aquaporin-1 null mice

被引:27
作者
McReynolds, MR
Taylor-Garcia, KM
Greer, KA
Hoying, JB
Brooks, HL
机构
[1] Univ Arizona, Coll Med, Dept Physiol, Tucson, AZ 85724 USA
[2] Univ Arizona, Arizona Res Labs, Genom Res Lab, Tucson, AZ 85724 USA
关键词
osmolarity; aquaporin; microarray; real-time PCR; vasopressin;
D O I
10.1152/ajprenal.00207.2004
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Mice that lack the aquaporin-1 gene (AQP1) lack a functional countercurrent multiplier mechanism, fail to concentrate the inner medullary (IM) interstitium, and present with a urinary concentrating defect. In this study, we use DNA microarrays to identify the gene expression profile of the IM of AQP1 null mice and corresponding changes in gene expression resulting from a loss of a hypertonic medullary interstitium. An ANOVA analysis model, CARMA, was used to isolate the knockout effect while taking into account experimental variability associated with microarray studies. In this study 5,701 genes of the possible similar to 12,000 genes on the array were included in the ANOVA; 531 genes were identified as demonstrating a >1.5-fold up- or downregulation between the wild-type and knockout groups. We randomly selected 35 genes for confirmation by real-time PCR, and 29 of the 35 genes were confirmed using this method. The overall pattern of gene expression in the AQP1 null mice was one of downregulation compared with gene expression in the renal medullas of the wild-type mice. Heat shock proteins 105 and 94, aldose reductase, adenylate kinase 2, aldolase B, aldehyde reductase 6, and p8 were decreased in the AQP1 null mice. Carboxylesterase 3, matrilin 2, lipocalin 2, and transforming growth factor-alpha were increased in IM of AQP1 null mice. In addition, we observed a loss of vasopressin type 2 receptor mRNA expression in renal medullas of the AQP1 null mice. Thus the loss of the hyperosmotic renal interstitium, due to a loss of the concentrating mechanism, drastically altered not only the phenotype of these animals but also their renal medullary gene expression profile.
引用
收藏
页码:F315 / F321
页数:7
相关论文
共 35 条
[1]  
ADAMSON C, 2004, JPET, V311, P18
[2]   V1 receptors in luminal action of vasopressin on distal K+ secretion [J].
Amorim, JBO ;
Malnic, G .
AMERICAN JOURNAL OF PHYSIOLOGY-RENAL PHYSIOLOGY, 2000, 278 (05) :F809-F816
[3]   Antidiuretic action of vasopressin: quantitative aspects and interaction between V1a and V2 receptor-mediated effects [J].
Bankir, L .
CARDIOVASCULAR RESEARCH, 2001, 51 (03) :372-390
[4]   HORMONAL SIGNALING AND REGULATION OF SALT AND WATER TRANSPORT IN THE COLLECTING DUCT [J].
BREYER, MD ;
ANDO, Y .
ANNUAL REVIEW OF PHYSIOLOGY, 1994, 56 :711-739
[5]   Response of renal inner medullary epithelial cells to osmotic stress [J].
Burg, MB .
COMPARATIVE BIOCHEMISTRY AND PHYSIOLOGY A-MOLECULAR & INTEGRATIVE PHYSIOLOGY, 2002, 133 (03) :661-666
[6]   Regulation of gene expression by hypertonicity [J].
Burg, MB ;
Kwon, ED ;
Kultz, D .
ANNUAL REVIEW OF PHYSIOLOGY, 1997, 59 :437-455
[7]   Greater tolerance of renal medullary cells for a slow increase in osmolality is associated with enhanced expression of HSP70 and other osmoprotective genes [J].
Cai, Q ;
Ferraris, JD ;
Burg, MB .
AMERICAN JOURNAL OF PHYSIOLOGY-RENAL PHYSIOLOGY, 2004, 286 (01) :F58-F67
[8]   Reduced water permeability and altered ultrastructure in thin descending limb of Henle in aquaporin-1 null mice [J].
Chou, CL ;
Knepper, MA ;
van Hoek, AN ;
Brown, D ;
Yang, BX ;
Ma, TH ;
Verkman, AS .
JOURNAL OF CLINICAL INVESTIGATION, 1999, 103 (04) :491-496
[9]   Control of the renal medullary circulation by vasopressin V1 and V2 receptors in the rat [J].
Cowley, AW .
EXPERIMENTAL PHYSIOLOGY, 2000, 85 :223S-231S
[10]   Transcriptional regulation by glucocorticoids of mitochondrial oxidative enzyme genes in the developing rat kidney [J].
Djouadi, F ;
Bastin, J ;
Kelly, DP ;
MerletBenichou, C .
BIOCHEMICAL JOURNAL, 1996, 315 :555-562