Hydroxyproline metabolism in mouse models of primary hyperoxaluria

被引:33
作者
Knight, John [1 ]
Holmes, Ross P. [1 ]
Cramer, Scott D. [2 ,3 ]
Takayama, Tatsuya [2 ]
Salido, Eduardo [4 ]
机构
[1] Wake Forest Univ Hlth Sci, Dept Urol, Winston Salem, NC 27157 USA
[2] Wake Forest Univ Hlth Sci, Dept Canc Biol, Winston Salem, NC 27157 USA
[3] Univ Colorado, Dept Pharmacol, Aurora, CO USA
[4] Univ La Laguna, Hosp Univ Canarias, Ctr Biomed Res Rare Dis, Inst Tecnol Biomed, E-38207 San Cristobal la Laguna, Spain
基金
美国国家卫生研究院;
关键词
oxalate; calcium oxalate crystals; nephrocalcinosis; PORCINE MODEL; OXALATE; GLYCOLATE; MICE;
D O I
10.1152/ajprenal.00473.2011
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Knight J, Holmes RP, Cramer SD, Takayama T, Salido E. Hydroxyproline metabolism in mouse models of primary hyperoxaluria. Am J Physiol Renal Physiol 302: F688-F693, 2012. First published December 21, 2011; doi:10.1152/ajprenal.00473.2011.Primary hyperoxaluria type 1 (PH1) and type 2 (PH2) are rare genetic diseases that result from deficiencies in glyoxylate metabolism. The increased oxalate synthesis that occurs can lead to kidney stone formation, deposition of calcium oxalate in the kidney and other tissues, and renal failure. Hydroxyproline (Hyp) catabolism, which occurs mainly in the liver and kidney, is a prominent source of glyoxylate and could account for a significant portion of the oxalate produced in PH. To determine the sensitivity of mouse models of PH1 and PH2 to Hyp-derived oxalate, animals were fed diets containing 1% Hyp. Urinary excretions of glycolate and oxalate were used to monitor Hyp catabolism and the kidneys were examined to assess pathological changes. Both strains of knockout (KO) mice excreted more oxalate than wild-type (WT) animals with Hyp feeding. After 4 wk of Hyp feeding, all mice deficient in glyoxylate reductase/hydroxypyruvate reductase (GRHPR KO) developed severe nephrocalcinosis in contrast to animals deficient in alanine-glyoxylate aminotransferase (AGXT KO) where nephrocalcinosis was milder and with a lower frequency. Plasma cystatin C measurements over 4-wk Hyp feeding indicated no significant loss of renal function in WT and AGXT KO animals, and significant and severe loss of renal function in GRHPR KO animals after 2 and 4 wk, respectively. These data suggest that GRHPR activity may be vital in the kidney for limiting the conversion of Hyp-derived glyoxylate to oxalate. As Hyp catabolism may make a major contribution to the oxalate produced in PH patients, Hyp feeding in these mouse models should be useful in understanding the mechanisms associated with calcium oxalate deposition in the kidney.
引用
收藏
页码:F688 / F693
页数:6
相关论文
共 19 条
[1]   Dietary soy β-conglycinin (7S globulin) inhibits atherosclerosis in mice [J].
Adams, MR ;
Golden, DL ;
Franke, AA ;
Potter, SM ;
Smith, HS ;
Anthony, MS .
JOURNAL OF NUTRITION, 2004, 134 (03) :511-516
[2]   The gene encoding hydroxypyruvate reductase (GRHPR) is mutated in patients with primary hyperoxaluria type II [J].
Cramer, SD ;
Ferree, PM ;
Lin, K ;
Milliner, DS ;
Holmes, RP .
HUMAN MOLECULAR GENETICS, 1999, 8 (11) :2063-2069
[3]  
Danupure C., 2001, METABOLIC MOL BASES, V8th, P3323
[4]   Macrophage responses to interferon-γ are dependent on cystatin C levels [J].
Frendeus, Katarina H. ;
Wallin, Hanna ;
Janciauskiene, Sabina ;
Abrahamson, Magnus .
INTERNATIONAL JOURNAL OF BIOCHEMISTRY & CELL BIOLOGY, 2009, 41 (11) :2262-2269
[5]   Serum oxalate in human beings and rats as determined with the use of ion chromatography [J].
Harris, AH ;
Freel, RW ;
Hatch, M .
JOURNAL OF LABORATORY AND CLINICAL MEDICINE, 2004, 144 (01) :45-52
[6]   Glyoxylate synthesis, and its modulation and influence on oxalate synthesis [J].
Holmes, RP ;
Assimos, DG .
JOURNAL OF UROLOGY, 1998, 160 (05) :1617-1624
[7]   The primary hyperoxalurias [J].
Hoppe, Bernd ;
Beck, Bodo B. ;
Milliner, Dawn S. .
KIDNEY INTERNATIONAL, 2009, 75 (12) :1264-1271
[8]   Hydroxyproline-Induced Hyperoxaluria Using Acidified and Traditional Diets in the Porcine Model [J].
Kaplon, Daniel M. ;
Penniston, Kristina L. ;
Darriet, Camille ;
Crenshaw, Thomas D. ;
Nakada, Stephen Y. .
JOURNAL OF ENDOUROLOGY, 2010, 24 (03) :355-359
[9]   Modeling of hyperoxaluric calcium oxalate nephrolithiasis: Experimental induction of hyperoxaluria by hydroxy-L-proline [J].
Khan, S. R. ;
Glenton, P. A. ;
Byer, K. J. .
KIDNEY INTERNATIONAL, 2006, 70 (05) :914-923
[10]   Experimental Induction of Calcium Oxalate Nephrolithiasis in Mice [J].
Khan, Saeed R. ;
Glenton, Patricia A. .
JOURNAL OF UROLOGY, 2010, 184 (03) :1189-1196