GeneSet Information

Tier II GS136589 • renal failure 2 (Renf2, Published QTL Chr 16)

DESCRIPTION:

QTL associated with renal failure 2. This interval was obtained by using a fixed interval width of 25 Mbp around the peak marker (87583609)

LABEL:

QTL-Renf2-Mouse-Chr 16

SCORE TYPE:

Binary

DATE ADDED:

2012-04-02

DATE UPDATED:

2024-10-22

SPECIES:

AUTHORS:

Andrews KL, Mudd JL, Li C, Miner JH

TITLE:

Quantitative trait loci influence renal disease progression in a mouse model of Alport syndrome.

JOURNAL:

The American journal of pathology Feb 2002, Vol 160, pp. 721-30

ABSTRACT:

Alport syndrome is a human hereditary glomerulonephritis which results in end-stage renal failure (ESRF) in most cases. It is caused by mutations in any one of the collagen alpha3(IV), alpha4(IV), or alpha5(IV) chain genes (COL4A3-COL4A5). Patients carrying identical mutations can exhibit very different disease courses, suggesting that other genes or the environment influence disease progression. We previously generated a knockout mouse model of Alport syndrome by mutating Col4a3. Here, we show that genetic background strongly influences the timing of onset of disease and rate of progression to ESRF in these mice. On the 129X1/SvJ background, Col4a3 -/- mice reached ESRF at approximately 66 days of age, while on the C57BL/6J background, the mean age at ESRF was 194 days of age. This suggests the existence of modifier genes that influence disease progression. A detailed histopathological analysis revealed that glomerular basement membrane lesions typical of Alport syndrome were significantly more frequent in homozygotes on the 129X1/SvJ background than on the C57BL/6J background as early as two weeks of age, suggesting that modifier genes act by influencing glomerular basement membrane structure. Additional data indicated that differential physiological responses to basement membrane splitting also underlie the differences in disease progression. We attempted to map the modifier genes as quantitative trait loci (QTLs) using age at ESRF as the quantitative trait. Genome scans were performed on mice at the two extremes in a cohort of mutant F1 x C57BL/6J backcross mice. Analysis with Map Manager QT revealed QTLs linked to markers on chromosomes 9 and 16. A more detailed understanding of how these QTLs act could lead to new approaches for therapy in diverse renal diseases. PUBMED: 11839593
Find other GeneSets from this publication

Annotation Information

No sequence read archive data associated with this GeneSet.


Renal Insufficiency (D051437)
Environment (D004777)
Chromosomes (D002875)
Patients (D010361)
Comprehension (D032882)
Quantitative Trait Loci (D040641)
Nephritis, Hereditary (D009394)
Kidney Failure, Chronic (D007676)
Glomerulonephritis (D005921)
Mice, Knockout (D018345)
Lifting (D017770)
Membranes (D008566)
Collagen (D003094)
Homozygote (D006720)
Basement Membrane (D001485)
Glomerular Basement Membrane (D050533)
Disease Progression (D018450)
Mutation (D009154)
kidney failure (MP:0003606)
glomerulonephritis (MP:0002743)
basement membrane (GO:0005604)

Gene List • 177 Genes

Uploaded As Gene Symbol Homology Score Priority LinkOuts Emphasis