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A novel-1364A/C aquaporin 5 gene promoter polymorphism influences the responses to salt loading of the renin-angiotensin-aldosterone system and of blood pressure in young healthy men

Identifieur interne : 000D11 ( Main/Exploration ); précédent : 000D10; suivant : 000D12

A novel-1364A/C aquaporin 5 gene promoter polymorphism influences the responses to salt loading of the renin-angiotensin-aldosterone system and of blood pressure in young healthy men

Auteurs : Michael Adamzik [Allemagne] ; Ulrich H. Frey [Allemagne] ; Kathrin Bitzer [Allemagne] ; Heinz Jakob [Allemagne] ; Hideo A. Baba [Allemagne] ; Roland E. Schmieder [Allemagne] ; Markus P. Schneider [Allemagne] ; Gerd Heusch [Allemagne] ; Jürgen Peters [Allemagne] ; Winfried Siffert [Allemagne]

Source :

RBID : ISTEX:2E0AA3989F55565445CCBDCBC940A59D90DD4309

English descriptors

Abstract

Abstract: Background: The family of aquaporin water channels contributes to water and salt homeostasis. AQP5 is a ubiquitously expressed exocrine-type water channel. Functional single nucleotide polymorphisms in AQP5 which alter gene transcription have not yet been described. We, therefore, sequenced the human AQP5 promoter to detect novel sequence variants which could impact upon AQP5 expression and contribute to the phenotypic variability of the renin-angiotensin-aldosterone system (RAAS). Method and results: Sequencing of the whole AQP5 promoter revealed a novel-1364A/C polymorphism. Substitution of C for A was associated with increased transcription factor binding as tested by electrophoretic mobility shift assay, but significantly reduced transcriptional activation of the AQP5 gene by cAMP and serum. The C allele was associated with significantly decreased mRNA in human heart and with decreased protein expression in erythrocyte membranes. Finally, we associated AQP5 genotypes with the variability of the RAAS in two independent study cohorts. First, we studied the phenotypic variability of the RAAS in 103 young (26 ± 3 years) healthy males under an increased dietary salt intake. Increasing salt intake decreased plasma angiotensin II by 25% in AC/CC genotypes but only by 2% in AA genotypes (P = 0.012), and it decreased serum aldosterone by 34% in subjects with AC/CC genotypes but only by 19% in the AA genotypes (P = 0.005). Both genotypes had increased blood pressure under salt diet (P < 0.01), which was significantly more pronounced in AA genotypes (P = 0.029). Second, we investigated associations with variables of the RAAS in 96 old patients (68 ± 10 years) with coronary artery disease scheduled for coronary artery bypass grafting. Aldosterone serum concentrations were 2-fold (P < 0.001) and angiotensin II plasma concentrations were 4-fold higher in AA genotypes than in AC/CC genotypes while ADH plasma concentrations did not differ. Conclusion: A novel single nucleotide polymorphism in the AQP5 gene promoter alters AQP5 expression in different in vitro systems and cells, and is associated with alterations of variables of the RAAS both in young healthy males and in patients with coronary artery disease.

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DOI: 10.1007/s00395-008-0750-z


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<title level="j" type="main">Basic Research in Cardiology</title>
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<term>Adamzik</term>
<term>Aldosterone</term>
<term>Aldosterone concentration</term>
<term>Allele</term>
<term>Allele oligonucleotide</term>
<term>Angiotensin</term>
<term>Aqp5</term>
<term>Aqp5 expression</term>
<term>Aqp5 genotype</term>
<term>Aqp5 promoter</term>
<term>Aquaporin</term>
<term>Assay</term>
<term>Baseline</term>
<term>Basic research</term>
<term>Biol</term>
<term>Biol chem</term>
<term>Blood pressure</term>
<term>Caucasian</term>
<term>Cohort</term>
<term>Coronary artery</term>
<term>Coronary artery disease</term>
<term>Datum</term>
<term>Emsa experiment</term>
<term>Equal amount</term>
<term>Erythrocyte</term>
<term>Erythrocyte membrane</term>
<term>Essen</term>
<term>Excretion</term>
<term>Fetal bovine serum</term>
<term>Gene promoter polymorphism</term>
<term>Genotype</term>
<term>Genotype distribution</term>
<term>Genotype group</term>
<term>Group difference</term>
<term>Growth medium</term>
<term>Heart rate</term>
<term>Hela</term>
<term>Hela cell</term>
<term>High salt diet</term>
<term>Human aqp5 promoter</term>
<term>Human erythrocyte membrane</term>
<term>Human right atrial specimen</term>
<term>Hypertension</term>
<term>Independent experiment</term>
<term>Membrane protein</term>
<term>Mmhg</term>
<term>Molar</term>
<term>Molar excess</term>
<term>Mrna</term>
<term>Nacl</term>
<term>Novel promoter polymorphism</term>
<term>Nuclear extract</term>
<term>Oligonucleotide</term>
<term>Oligonucleotides</term>
<term>Phenotypic variability</term>
<term>Plasma angiotensin</term>
<term>Plasma concentration</term>
<term>Polymorphism</term>
<term>Positive control</term>
<term>Primer</term>
<term>Promoter</term>
<term>Promoter activity</term>
<term>Promoter fragment</term>
<term>Protein expression</term>
<term>Raas</term>
<term>Reporter activity</term>
<term>Reporter assay</term>
<term>Salt intake</term>
<term>Santa cruz</term>
<term>Schmieder</term>
<term>Seap</term>
<term>Seap activity</term>
<term>Serum aldosterone concentration</term>
<term>Sodium load</term>
<term>Sodium load change</term>
<term>Statistical comparison</term>
<term>Steinkopff verlag</term>
<term>Systolic</term>
<term>Systolic blood pressure</term>
<term>Transcription</term>
<term>Transcription factor</term>
<term>Transcription factor binding</term>
<term>Transfection</term>
<term>Transfection efficiency</term>
<term>Unlabeled nucleotide</term>
<term>Unlabelled</term>
<term>Water channel</term>
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<div type="abstract" xml:lang="en">Abstract: Background: The family of aquaporin water channels contributes to water and salt homeostasis. AQP5 is a ubiquitously expressed exocrine-type water channel. Functional single nucleotide polymorphisms in AQP5 which alter gene transcription have not yet been described. We, therefore, sequenced the human AQP5 promoter to detect novel sequence variants which could impact upon AQP5 expression and contribute to the phenotypic variability of the renin-angiotensin-aldosterone system (RAAS). Method and results: Sequencing of the whole AQP5 promoter revealed a novel-1364A/C polymorphism. Substitution of C for A was associated with increased transcription factor binding as tested by electrophoretic mobility shift assay, but significantly reduced transcriptional activation of the AQP5 gene by cAMP and serum. The C allele was associated with significantly decreased mRNA in human heart and with decreased protein expression in erythrocyte membranes. Finally, we associated AQP5 genotypes with the variability of the RAAS in two independent study cohorts. First, we studied the phenotypic variability of the RAAS in 103 young (26 ± 3 years) healthy males under an increased dietary salt intake. Increasing salt intake decreased plasma angiotensin II by 25% in AC/CC genotypes but only by 2% in AA genotypes (P = 0.012), and it decreased serum aldosterone by 34% in subjects with AC/CC genotypes but only by 19% in the AA genotypes (P = 0.005). Both genotypes had increased blood pressure under salt diet (P < 0.01), which was significantly more pronounced in AA genotypes (P = 0.029). Second, we investigated associations with variables of the RAAS in 96 old patients (68 ± 10 years) with coronary artery disease scheduled for coronary artery bypass grafting. Aldosterone serum concentrations were 2-fold (P < 0.001) and angiotensin II plasma concentrations were 4-fold higher in AA genotypes than in AC/CC genotypes while ADH plasma concentrations did not differ. Conclusion: A novel single nucleotide polymorphism in the AQP5 gene promoter alters AQP5 expression in different in vitro systems and cells, and is associated with alterations of variables of the RAAS both in young healthy males and in patients with coronary artery disease.</div>
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