Literature DB >> 12819244

Quantitative trait loci for hypercalciuria in a rat model of kidney stone disease.

Richard R Hoopes1, Robert Reid, Saunak Sen, Claude Szpirer, Peter Dixon, Anna A J Pannett, Rajesh V Thakker, David A Bushinsky, Steven J Scheinman.   

Abstract

Hypercalciuria is the most common risk factor for kidney stones and has a recognized familial component. The genetic hypercalciuric stone-forming (GHS) rat is an animal model that closely resembles human idiopathic hypercalciuria, with excessive intestinal calcium absorption, increased bone resorption, and impaired renal calcium reabsorption; overexpression of the vitamin D receptor (VDR) in target tissues; and calcium nephrolithiasis. For identifying genetic loci that contribute to hypercalciuria in the GHS rat, an F2 generation of 156 rats bred from GHS female rats and normocalciuric WKY male rats was studied. The calcium excretion was six- to eightfold higher in the GHS female than in the WKY male progenitors. Selective genotyping of those F2 rats with the highest 30% and lowest 30% rates of calcium excretion was performed, scoring 98 markers with a mean interval of 23 cM across all 20 autosomes and the X chromosome. With the use of strict criteria for significance, significant linkage was found between hypercalciuria and a region of chromosome 1 at D1Rat169 (LOD, 2.91). Suggestive linkage to regions of chromosomes 4, 7, 10, and 14 was found. The proportion of phenotypic variance contributed by the region on chromosome 1, with appropriate adjustments, was estimated to be 7%. Candidate genes encoding the VDR and the calcium-sensing receptor were localized to regions on rat chromosomes 7 and 11, respectively, but the suggestive quantitative trait locus on chromosome 7 was not in the region of the VDR gene locus. Identification of genes that contribute to hypercalciuria in this animal model should prove valuable in understanding idiopathic hypercalciuria and kidney stone disease in humans.

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Year:  2003        PMID: 12819244     DOI: 10.1097/01.asn.0000073920.43848.a3

Source DB:  PubMed          Journal:  J Am Soc Nephrol        ISSN: 1046-6673            Impact factor:   10.121


  17 in total

1.  Multiplex microsatellite marker panels for genetic monitoring of common rat strains.

Authors:  Elizabeth C Bryda; Lela K Riley
Journal:  J Am Assoc Lab Anim Sci       Date:  2008-05       Impact factor: 1.232

2.  Chlorthalidone Is Superior to Potassium Citrate in Reducing Calcium Phosphate Stones and Increasing Bone Quality in Hypercalciuric Stone-Forming Rats.

Authors:  Nancy S Krieger; John R Asplin; Ignacio Granja; Felix M Ramos; Courtney Flotteron; Luojing Chen; Tong Tong Wu; Marc D Grynpas; David A Bushinsky
Journal:  J Am Soc Nephrol       Date:  2019-05-17       Impact factor: 10.121

3.  Effect of Potassium Citrate on Calcium Phosphate Stones in a Model of Hypercalciuria.

Authors:  Nancy S Krieger; John R Asplin; Kevin K Frick; Ignacio Granja; Christopher D Culbertson; Adeline Ng; Marc D Grynpas; David A Bushinsky
Journal:  J Am Soc Nephrol       Date:  2015-04-08       Impact factor: 10.121

Review 4.  Genetic determinants of urolithiasis.

Authors:  Carla G Monico; Dawn S Milliner
Journal:  Nat Rev Nephrol       Date:  2011-12-20       Impact factor: 28.314

5.  1,25(OH)₂D₃ induces a mineralization defect and loss of bone mineral density in genetic hypercalciuric stone-forming rats.

Authors:  Adeline H Ng; Kevin K Frick; Nancy S Krieger; John R Asplin; Madison Cohen-McFarlane; Christopher D Culbertson; Kelly Kyker-Snowman; Marc D Grynpas; David A Bushinsky
Journal:  Calcif Tissue Int       Date:  2014-01-31       Impact factor: 4.333

Review 6.  The genetic components of idiopathic nephrolithiasis.

Authors:  Massimo Attanasio
Journal:  Pediatr Nephrol       Date:  2010-06-19       Impact factor: 3.714

7.  The relation between bone and stone formation.

Authors:  Nancy S Krieger; David A Bushinsky
Journal:  Calcif Tissue Int       Date:  2012-12-18       Impact factor: 4.333

8.  Persistence of 1,25D-induced hypercalciuria in alendronate-treated genetic hypercalciuric stone-forming rats fed a low-calcium diet.

Authors:  Kevin K Frick; John R Asplin; Christopher D Culbertson; Ignacio Granja; Nancy S Krieger; David A Bushinsky
Journal:  Am J Physiol Renal Physiol       Date:  2014-02-26

9.  Dissecting the genetic basis of kidney tubule response to hyperoxaluria using chromosome substitution strains.

Authors:  John H Wiessner; Michael R Garrett; Richard J Roman; Neil S Mandel
Journal:  Am J Physiol Renal Physiol       Date:  2009-06-03

10.  Increased biological response to 1,25(OH)(2)D(3) in genetic hypercalciuric stone-forming rats.

Authors:  Kevin K Frick; John R Asplin; Murray J Favus; Christopher Culbertson; Nancy S Krieger; David A Bushinsky
Journal:  Am J Physiol Renal Physiol       Date:  2013-01-23
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