A Common RET Variant Is Associated with Reduced Newborn Kidney Size and Function
Open Access
- 1 October 2008
- journal article
- Published by Wolters Kluwer Health in Journal of the American Society of Nephrology
- Vol. 19 (10) , 2027-2034
- https://doi.org/10.1681/asn.2007101098
Abstract
Congenital nephron number varies five-fold among normal humans, and individuals at the lower end of this range may have an increased lifetime risk for essential hypertension or renal insufficiency; however, the mechanisms that determine nephron number are unknown. This study tested the hypothesis that common hypomorphic variants of the RET gene, which encodes a tyrosine kinase receptor critical for renal branching morphogenesis, might account for subtle renal hypoplasia in some normal newborns. A common single-nucleotide polymorphism (rs1800860 G/A) was identified within an exonic splicing enhancer in exon 7. The adenosine variant at mRNA position 1476 reduced affinity for spliceosome proteins, enhanced the likelihood of aberrant mRNA splicing, and diminished the level of functional transcript in human cells. In vivo, normal white newborns with an rs1800860(1476A) allele had kidney volumes 10% smaller and cord blood cystatin C levels 9% higher than those with the rs1800860(1476G) allele. These findings suggest that the RET(1476A) allele, in combination with other common polymorphic developmental genes, may account for subtle renal hypoplasia in a significant proportion of the white population. Whether this gene variant affects clinical outcomes requires further study.Keywords
This publication has 35 references indexed in Scilit:
- PTEN modulates GDNF/RET mediated chemotaxis and branching morphogenesis in the developing kidneyDevelopmental Biology, 2007
- Ras/ERK1/2-mediated STAT3 Ser727 Phosphorylation by Familial Medullary Thyroid Carcinoma-associated RET Mutants Induces Full Activation of STAT3 and Is Required for c-fos Promoter Activation, Cell Mitogenicity, and TransformationPublished by Elsevier ,2007
- Targeted mutation of serine 697 in theRettyrosine kinase causes migration defect of enteric neural crest cellsDevelopment, 2006
- Regulation of c-Ret in the developing kidney is responsive to Pax2 gene dosageHuman Molecular Genetics, 2006
- Renal hypoplasia: lessons from Pax2Pediatric Nephrology, 2005
- Mice expressing a dominant-negative Ret mutation phenocopy human Hirschsprung disease and delineate a direct role of Ret in spermatogenesisDevelopment, 2004
- A Targeting Mutation of Tyrosine 1062 in Ret Causes a Marked Decrease of Enteric Neurons and Renal HypoplasiaMolecular and Cellular Biology, 2004
- Glomerular number and size in autopsy kidneys: The relationship to birth weightKidney International, 2003
- Book ReviewNeuroanatomy: An atlas of structures, sections and systemsNew England Journal of Medicine, 1987
- Simplified Calculation of Body-Surface AreaNew England Journal of Medicine, 1987