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Dominant renin gene mutations associated with early-onset hyperuricemia, anemia, and chronic kidney failure
M. Živná, H. Hůlková, M. Matignon, K. Hodaňová, P. Vyleťal, M. Kalbáčová, V. Barešová, J. Sikora, H. Blažková, J. Živný, R. Ivánek, V. Stráneckyý J. Sovová, K. Claes, E. Lerut, J.P. Fryns, P.S. Hart, T.C. Hart, J.N. Adams, A. Pawtowski, M....
Language English Country United States
Document type Research Support, Non-U.S. Gov't
NLK
Cell Press Free Archives
from 1997-01-01 to 6 months ago
Free Medical Journals
from 1949 to 6 months ago
PubMed Central
from 1949 to 6 months ago
Europe PubMed Central
from 1949 to 6 months ago
Open Access Digital Library
from 2005-01-01
- MeSH
- Anemia genetics metabolism MeSH
- Cell Line MeSH
- Kidney Failure, Chronic genetics metabolism MeSH
- Child MeSH
- Genes, Dominant MeSH
- Adult MeSH
- Genetic Linkage MeSH
- Hyperuricemia genetics metabolism MeSH
- Kidney cytology ultrastructure MeSH
- Middle Aged MeSH
- Humans MeSH
- Adolescent MeSH
- Young Adult MeSH
- Mutation MeSH
- Computer Simulation MeSH
- Child, Preschool MeSH
- Renin genetics metabolism MeSH
- Pedigree MeSH
- Sequence Analysis, DNA MeSH
- Age of Onset MeSH
- Check Tag
- Child MeSH
- Adult MeSH
- Middle Aged MeSH
- Humans MeSH
- Adolescent MeSH
- Young Adult MeSH
- Male MeSH
- Child, Preschool MeSH
- Female MeSH
- Publication type
- Research Support, Non-U.S. Gov't MeSH
Through linkage analysis and candidate gene sequencing, we identified three unrelated families with the autosomal-dominant inheritance of early onset anemia, hypouricosuric hyperuricemia, progressive kidney failure, and mutations resulting either in the deletion (p.Leu16del) or the amino acid exchange (p.Leu16Arg) of a single leucine residue in the signal sequence of renin. Both mutations decrease signal sequence hydrophobicity and are predicted by bioinformatic analyses to damage targeting and cotranslational translocation of preprorenin into the endoplasmic reticulum (ER). Transfection and in vitro studies confirmed that both mutations affect ER translocation and processing of nascent preprorenin, resulting either in reduced (p.Leu16del) or abolished (p.Leu16Arg) prorenin and renin biosynthesis and secretion. Expression of renin and other components of the renin-angiotensin system was decreased accordingly in kidney biopsy specimens from affected individuals. Cells stably expressing the p.Leu16del protein showed activated ER stress, unfolded protein response, and reduced growth rate. It is likely that expression of the mutant proteins has a dominant toxic effect gradually reducing the viability of renin-expressing cells. This alters the intrarenal renin-angiotensin system and the juxtaglomerular apparatus functionality and leads to nephron dropout and progressive kidney failure. Our findings provide insight into the functionality of renin-angiotensin system and stress the importance of renin analysis in families and individuals with early onset hyperuricemia, anemia, and progressive kidney failure.
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- $a Center for Applied Genomics, Charles University in Prague, First Faculty of Medicine, Prague, Czech Republic.
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- $a Through linkage analysis and candidate gene sequencing, we identified three unrelated families with the autosomal-dominant inheritance of early onset anemia, hypouricosuric hyperuricemia, progressive kidney failure, and mutations resulting either in the deletion (p.Leu16del) or the amino acid exchange (p.Leu16Arg) of a single leucine residue in the signal sequence of renin. Both mutations decrease signal sequence hydrophobicity and are predicted by bioinformatic analyses to damage targeting and cotranslational translocation of preprorenin into the endoplasmic reticulum (ER). Transfection and in vitro studies confirmed that both mutations affect ER translocation and processing of nascent preprorenin, resulting either in reduced (p.Leu16del) or abolished (p.Leu16Arg) prorenin and renin biosynthesis and secretion. Expression of renin and other components of the renin-angiotensin system was decreased accordingly in kidney biopsy specimens from affected individuals. Cells stably expressing the p.Leu16del protein showed activated ER stress, unfolded protein response, and reduced growth rate. It is likely that expression of the mutant proteins has a dominant toxic effect gradually reducing the viability of renin-expressing cells. This alters the intrarenal renin-angiotensin system and the juxtaglomerular apparatus functionality and leads to nephron dropout and progressive kidney failure. Our findings provide insight into the functionality of renin-angiotensin system and stress the importance of renin analysis in families and individuals with early onset hyperuricemia, anemia, and progressive kidney failure.
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