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  3. The Vacuolar H+-ATPase B1 Subunit Polymorphism p.E161K Associates with Impaired Urinary Acidification in Recurrent Stone Formers
 

The Vacuolar H+-ATPase B1 Subunit Polymorphism p.E161K Associates with Impaired Urinary Acidification in Recurrent Stone Formers

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BORIS DOI
10.7892/boris.75272
Date of Publication
2015
Publication Type
Article
Division/Institute

Universitätsklinik fü...

Lehrkörper, Medizinis...

Universitätsklinik fü...

Contributor
Dhayat, Nasserorcid-logo
Universitätsklinik für Nephrologie, Hypertonie und Klinische Pharmakologie
Schaller, Andréorcid-logo
Universitätsklinik für Kinderheilkunde
Departement Klinische Forschung, Forschungsgruppe Humangenetik
Albano, Giuseppe
Universitätsklinik für Nephrologie, Hypertonie und Klinische Pharmakologie
Poindexter, John
Griffith, Carolyn
Pasch, Andreas
Universitätsklinik für Nephrologie, Hypertonie und Klinische Pharmakologie
Gallati, Sabinaorcid-logo
Lehrkörper, Medizinische Fakultät
Departement Klinische Forschung, Forschungsgruppe Humangenetik
Universitätsklinik für Kinderheilkunde
Vogt, Bruno
Universitätsklinik für Nephrologie, Hypertonie und Klinische Pharmakologie
Moe, Orson
Fuster, Daniel Guidoorcid-logo
Universitätsklinik für Nephrologie, Hypertonie und Klinische Pharmakologie
Institut für Biochemie und Molekulare Medizin
Departement Klinische Forschung, Forschungsgruppe Nephrologie / Hypertonie
Subject(s)

600 - Technology::610...

500 - Science::570 - ...

Series
Journal of the American Society of Nephrology
ISSN or ISBN (if monograph)
1046-6673
Publisher
Lippincott Williams & Wilkins
Language
English
Publisher DOI
10.1681/ASN.2015040367
PubMed ID
26453614
Description
Mutations in the vacuolar–type H+-ATPase B1 subunit gene ATP6V1B1 cause autosomal–recessive distal
renal tubular acidosis (dRTA). We previously identified a single-nucleotide polymorphism (SNP) in the
human B1 subunit (c.481G.A; p.E161K) that causes greatly diminished pump function in vitro. To investigate
the effect of this SNP on urinary acidification, we conducted a genotype-phenotype analysis of
recurrent stone formers in theDallas and Bern kidney stone registries. Of 555 patients examined, 32 (5.8%)
were heterozygous for the p.E161K SNP, and the remaining 523 (94.2%) carried two wild–type alleles.
After adjustment for sex, age, body mass index, and dietary acid and alkali intake, p.E161K SNP carriers
had a nonsignificant tendency to higher urinary pH on a random diet (6.31 versus 6.09; P=0.09). Under an
instructed low–Ca and low–Na diet, urinary pH was higher in p.E161K SNP carriers (6.56 versus 6.01;
P,0.01). Kidney stones of p.E161K carriers were more likely to contain calcium phosphate than stones
of wild-type patients. In acute NH4Cl loading, p.E161K carriers displayed a higher trough urinary pH (5.34
versus 4.89; P=0.01) than wild-type patients. Overall, 14.6% of wild-type patients and 52.4% of p.E161K
carriers were unable to acidify their urine below pH 5.3 and thus, can be considered to have incomplete
dRTA. In summary, our data indicate that recurrent stone formers with the vacuolar H+-ATPase B1 subunit
p.E161K SNP exhibit a urinary acidification deficit with an increased prevalence of calcium phosphate–
containing kidney stones. The burden of E161K heterozygosity may be a forme fruste of dRTA.
Handle
https://boris-portal.unibe.ch/handle/20.500.12422/137646
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File(s)
FileFile TypeFormatSizeLicensePublisher/Copright statementContent
Final manuscript.pdftextAdobe PDF654.55 KBpublisherpublished restricted
Accepted Version.pdftextAdobe PDF583.33 KBpublisheracceptedOpen
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