Skip to main content
Top
Published in: Clinical Rheumatology 6/2006

01-11-2006 | Original Article

Renin–angiotensin system gene polymorphisms: association with susceptibility to Henoch–Schonlein purpura and renal involvement

Authors: Ozan Özkaya, Oğuz Söylemezoğlu, Sevim Gönen, Müge Mısırlıoğlu, Serdar Tuncer, Süleyman Kalman, Necla Buyan, Enver Hasanoğlu

Published in: Clinical Rheumatology | Issue 6/2006

Login to get access

Abstract

The clinical course of Henoch–Schönlein Purpura (HSP) in children is variable, with some patients having a much more rapidly progressing course than others. We investigated whether polymorphisms of the renin–angiotensin system (RAS) genes are involved in HSP. Three RAS genotypes were examined in 114 children with HSP and in 164 healthy children: the angiotensin I converting enzyme (ACE) insertion/deletion polymorphism, the M235T mutation in the angiotensinogen gene (Agt), and the A1166C in the angiotensin II type I receptor (AT1R) gene. Significant differences were observed between HSP patients and control group in the frequency of ACE and Agt genotypes (p=0.004 and p=0.003, respectively). The TT genotype of Agt gene was associated with a 3.5-fold increased risk for Henoch–Schönlein nephritis (HSN) compared with the MM/MT genotype (odds ratio, 3.5; 95% confidence interval, 1.2–10.4). There was a trend to a higher prevalence of the TT genotype of the Agt gene among patients with nephrotic range proteinuria when compared to the patients with mild proteinuria, although the difference did not reach a statistical significance. The results of this study suggest that polymorphisms of ACE gene and Agt gene likely influence the risk of developing HSP. However, among the three genes of the RAS studies, only Agt gene was associated with the susceptibility to HSN. RAS gene polymorphisms studied are not associated with the presence of nephrotic range proteinuria. Additional studies are warranted to verify the correlation between RAS gene polymorphisms and susceptibility to HSP.
Literature
1.
go back to reference Levy M (2001) Familial cases of Berger’s disease and anaphylactoid purpura. Kidney Int 60:1611–1612CrossRefPubMed Levy M (2001) Familial cases of Berger’s disease and anaphylactoid purpura. Kidney Int 60:1611–1612CrossRefPubMed
2.
go back to reference McLean RH, Wyatt RJ, Julian BA (1984) Complement phenotypes in glomerulonephritis: increased frequency of homozygous null C4 phenotypes in IgA nephropathy and Henoch–Schönlein purpura. Kidney Int 26:855–860PubMed McLean RH, Wyatt RJ, Julian BA (1984) Complement phenotypes in glomerulonephritis: increased frequency of homozygous null C4 phenotypes in IgA nephropathy and Henoch–Schönlein purpura. Kidney Int 26:855–860PubMed
3.
go back to reference Jin DK, KohsakaT, Koo JW, Ha IS, Cheong HI, Choi Y (1996) Complement 4 locus gene deletion and DQA1*0301 gene: genetic risk factors for IgA nephropathy and Henoch–Schönlein nephritis. Nephron 73:390–395PubMedCrossRef Jin DK, KohsakaT, Koo JW, Ha IS, Cheong HI, Choi Y (1996) Complement 4 locus gene deletion and DQA1*0301 gene: genetic risk factors for IgA nephropathy and Henoch–Schönlein nephritis. Nephron 73:390–395PubMedCrossRef
4.
go back to reference Anderson PW, Do YS, Hsueh WA (1993) Angiotensin II causes mesangial cell hypertrophy. Hypertension 21:29–35PubMed Anderson PW, Do YS, Hsueh WA (1993) Angiotensin II causes mesangial cell hypertrophy. Hypertension 21:29–35PubMed
5.
go back to reference Rigat B, Hubert C, Alhenc-Gelas F, Cambien F, Corvol P, Soubrier F (1993) An I/D polymorphism in the ACE gene accounting for half the variance of serum enzyme levels. J Clin Invest 86:1343–1346 Rigat B, Hubert C, Alhenc-Gelas F, Cambien F, Corvol P, Soubrier F (1993) An I/D polymorphism in the ACE gene accounting for half the variance of serum enzyme levels. J Clin Invest 86:1343–1346
6.
go back to reference Cambien F, Poirier O, Lecerf L, Evans A, Cambou JP, Arveiler D, Luc G, Bard JM, Bara L, Ricard S, Tiret L, Amouyei P, Alhenc-Gelas F, Soubrier F (1992) Deletion polymorphism in the gene for angiotensin-converting enzyme is a potent risk factor for myocardial infarction. Nature 359:641–644CrossRefPubMed Cambien F, Poirier O, Lecerf L, Evans A, Cambou JP, Arveiler D, Luc G, Bard JM, Bara L, Ricard S, Tiret L, Amouyei P, Alhenc-Gelas F, Soubrier F (1992) Deletion polymorphism in the gene for angiotensin-converting enzyme is a potent risk factor for myocardial infarction. Nature 359:641–644CrossRefPubMed
7.
go back to reference Yoshida H, Kuriyama S, Atsumi Y, Tomonari H, Mitarai T, Hamaguchi A, Kubo H, Kawaguchi Y, Kon V, Matsuoka K, Ichikawa I, Sakai O (1996) Angiotensin I converting enzyme gene polymorphism in non-insulin dependent diabetes mellitus. Kidney Int 50:657–664PubMed Yoshida H, Kuriyama S, Atsumi Y, Tomonari H, Mitarai T, Hamaguchi A, Kubo H, Kawaguchi Y, Kon V, Matsuoka K, Ichikawa I, Sakai O (1996) Angiotensin I converting enzyme gene polymorphism in non-insulin dependent diabetes mellitus. Kidney Int 50:657–664PubMed
8.
go back to reference Hunley TE, Julian BA, Phillips JA, Summer ML, Yoshida H, Horn RG, Brown NJ, Fogo A, Ichikawa I, Kon V (1996) Angiotensin converting enzyme gene polymorphism: potential silencer motif and impact on progression in IgA nephropathy. Kidney Int 49:571–577PubMed Hunley TE, Julian BA, Phillips JA, Summer ML, Yoshida H, Horn RG, Brown NJ, Fogo A, Ichikawa I, Kon V (1996) Angiotensin converting enzyme gene polymorphism: potential silencer motif and impact on progression in IgA nephropathy. Kidney Int 49:571–577PubMed
9.
go back to reference Yoshida H, Mitarai T, Kawamura T, Kitajima T, Miyazaki Y, Nagasawa R, Kubo H, Ichikawa I, Sakai O (1995) Role of deletion polymorphism of the ACE gene in the progress and therapeutic responsiveness of IgA nephropathy. J Clin Invest 96:2162–2169PubMed Yoshida H, Mitarai T, Kawamura T, Kitajima T, Miyazaki Y, Nagasawa R, Kubo H, Ichikawa I, Sakai O (1995) Role of deletion polymorphism of the ACE gene in the progress and therapeutic responsiveness of IgA nephropathy. J Clin Invest 96:2162–2169PubMed
10.
go back to reference Yoshioka T, Xu Y, Yoshida H, Shiraga H, Muraki T, Ito K (1998) Deletion polymorphism of the angiotensin converting enzyme gene predicts persistent proteinuria in Henoch–Schönlein purpura nephritis. Arch Dis Child 79:394–399PubMedCrossRef Yoshioka T, Xu Y, Yoshida H, Shiraga H, Muraki T, Ito K (1998) Deletion polymorphism of the angiotensin converting enzyme gene predicts persistent proteinuria in Henoch–Schönlein purpura nephritis. Arch Dis Child 79:394–399PubMedCrossRef
11.
go back to reference Stratta P, Canavese C, Ciccone G, Barolo S, Dall’Omo AM, Fasano ME, Mazzola G, Berutti S, Fop F, Curtoni ES, Piccoli G (1999) Angiotensin I-converting enzyme genotype significantly affects progression of IgA glomerulonephritis in an Italian population. Am J Kid Dis 33:1071–1079PubMed Stratta P, Canavese C, Ciccone G, Barolo S, Dall’Omo AM, Fasano ME, Mazzola G, Berutti S, Fop F, Curtoni ES, Piccoli G (1999) Angiotensin I-converting enzyme genotype significantly affects progression of IgA glomerulonephritis in an Italian population. Am J Kid Dis 33:1071–1079PubMed
12.
go back to reference Frishberg Y, Becker-Cohen R, Halle D, Feigin E, Eisenstein B, Halevy R, Lotan D, Juabej I, Ish-Shalom N, Magen D, Shvil Y, Sinai-treiman L, Drukker A (1998) Genetic polymorphism of the renin–angiotensin system and the outcome of focal segmental glomerulosclerosis in children. Kidney Int 54:1843–1849CrossRefPubMed Frishberg Y, Becker-Cohen R, Halle D, Feigin E, Eisenstein B, Halevy R, Lotan D, Juabej I, Ish-Shalom N, Magen D, Shvil Y, Sinai-treiman L, Drukker A (1998) Genetic polymorphism of the renin–angiotensin system and the outcome of focal segmental glomerulosclerosis in children. Kidney Int 54:1843–1849CrossRefPubMed
13.
go back to reference Tiret L, Bonnardeaux A, Poirier O, Ricard S, Marques-Vidal P, Evans A, Arveiler D, Luc G, Kee F, Ducimetiere P, Soubrier F, Cambien F (1994) Synergistic effects of angiotensin-converting enzyme and angiotensin-II type 1 receptor gene polymorphisms on risk of myocardial infarction. Lancet 344:910–913CrossRef Tiret L, Bonnardeaux A, Poirier O, Ricard S, Marques-Vidal P, Evans A, Arveiler D, Luc G, Kee F, Ducimetiere P, Soubrier F, Cambien F (1994) Synergistic effects of angiotensin-converting enzyme and angiotensin-II type 1 receptor gene polymorphisms on risk of myocardial infarction. Lancet 344:910–913CrossRef
14.
go back to reference Bonnardeaux A, Davies E, Jeunmaitre X, Fery I, Charru A, Clauser E, Tiret L, Cambien F, Corvol P, Soubrict F (1999) Angiotensin II type 1 receptor gene polymorphisms in human essential hypertension. Hypertension 24:63–69CrossRef Bonnardeaux A, Davies E, Jeunmaitre X, Fery I, Charru A, Clauser E, Tiret L, Cambien F, Corvol P, Soubrict F (1999) Angiotensin II type 1 receptor gene polymorphisms in human essential hypertension. Hypertension 24:63–69CrossRef
15.
go back to reference Jeunemaitre X, Soubrier F, Kotelevtsev YV, Lifton RP, Williams CS, Charru A, Hunt SC, Hopkins PN, Williams RR, LaLouel JM (1992) Molecular basis of human hypertension: role of angiotensinogen. Cell 71:169–180CrossRefPubMed Jeunemaitre X, Soubrier F, Kotelevtsev YV, Lifton RP, Williams CS, Charru A, Hunt SC, Hopkins PN, Williams RR, LaLouel JM (1992) Molecular basis of human hypertension: role of angiotensinogen. Cell 71:169–180CrossRefPubMed
16.
go back to reference Lalouel J, Rohrwasser A, Terreros D, Morgan T, Ward K (2001) Angiotensinogen in essential hypertension: from genetics to nephrology. J Am Soc Nephrol 12:606–615PubMed Lalouel J, Rohrwasser A, Terreros D, Morgan T, Ward K (2001) Angiotensinogen in essential hypertension: from genetics to nephrology. J Am Soc Nephrol 12:606–615PubMed
17.
go back to reference Mills JA, Michel BA, Block D (1990) The American College of Rheumatology 1990 criteria for the classification of Henoch–Schönlein purpura. Arthritis Rheum 33:1114–1121PubMed Mills JA, Michel BA, Block D (1990) The American College of Rheumatology 1990 criteria for the classification of Henoch–Schönlein purpura. Arthritis Rheum 33:1114–1121PubMed
18.
go back to reference Lindpaintner K, Pfeffer MA, Kreutz R et al (1995) A prospective evaluation of an angiotensin-converting-enzyme gene polymorphism and the risk of ischemic heart disease. N Engl J Med 16:706–711CrossRef Lindpaintner K, Pfeffer MA, Kreutz R et al (1995) A prospective evaluation of an angiotensin-converting-enzyme gene polymorphism and the risk of ischemic heart disease. N Engl J Med 16:706–711CrossRef
19.
go back to reference Siragy HM, Carey RM (1990) The subtype-2(AT2) angiotensin mediates renal production of nitric oxide in conscious rats. J Clin Invest 100:264–269 Siragy HM, Carey RM (1990) The subtype-2(AT2) angiotensin mediates renal production of nitric oxide in conscious rats. J Clin Invest 100:264–269
20.
go back to reference Sechi LA, Grady EF, Griffin CA, Kalinyak JE, Schambelan M (1992) Distribution of angiotensin II receptor subtypes in rat and human kidney. Am J Physiol 262:F236–F240PubMed Sechi LA, Grady EF, Griffin CA, Kalinyak JE, Schambelan M (1992) Distribution of angiotensin II receptor subtypes in rat and human kidney. Am J Physiol 262:F236–F240PubMed
21.
go back to reference Wolf G, Neilson EG (1993) Angiotensin II as a renal growth factor. Am Soc Nephrol 3:1531–1540 Wolf G, Neilson EG (1993) Angiotensin II as a renal growth factor. Am Soc Nephrol 3:1531–1540
22.
go back to reference Buikema H, Pinto YM, Rooks G, Grandjean JG, Schunkert H, van Gilst WH (1996) The deletion polymorphism of the angiotensin-converting enzyme gene is related to phenotypic differences in human arteries. Eur Heart J 17:787–794PubMed Buikema H, Pinto YM, Rooks G, Grandjean JG, Schunkert H, van Gilst WH (1996) The deletion polymorphism of the angiotensin-converting enzyme gene is related to phenotypic differences in human arteries. Eur Heart J 17:787–794PubMed
23.
go back to reference Kainulainen K, Perola M, Terwilliger J, Kaprio J, Kaskenvuo M, Syvanen AC, Vartiainen E, Peltonen L, Kontula K (1999) Evidence for involvement of the type 1 angiotensin II receptor locus in essential hypertension. Hypertension 33:844–849PubMed Kainulainen K, Perola M, Terwilliger J, Kaprio J, Kaskenvuo M, Syvanen AC, Vartiainen E, Peltonen L, Kontula K (1999) Evidence for involvement of the type 1 angiotensin II receptor locus in essential hypertension. Hypertension 33:844–849PubMed
24.
go back to reference Marre M, Jeunemaitre X, Gallois Y, Roidier M, Chatellier G, Sert C, Dusselier L, Kahal Z, Chaillous L, Halimi S, Muller A, Sackmann H, Bauduceau B, Bled F, Passa P, Gelas FA (1997) Contribution of genetic polymorphism in the renin–angiotensin system to the development of renal complications in insulin-dependent diabetes. J Clin Invest 99:1585–1595PubMed Marre M, Jeunemaitre X, Gallois Y, Roidier M, Chatellier G, Sert C, Dusselier L, Kahal Z, Chaillous L, Halimi S, Muller A, Sackmann H, Bauduceau B, Bled F, Passa P, Gelas FA (1997) Contribution of genetic polymorphism in the renin–angiotensin system to the development of renal complications in insulin-dependent diabetes. J Clin Invest 99:1585–1595PubMed
25.
go back to reference Pei Y, Scholey J, Thai K, Suzuki M, Cattran D (1997) Association of angiotensinogen gene T235 variant with progression of IgA nephropathy in Caucasian patients. J Clin Invest 15:814–820CrossRef Pei Y, Scholey J, Thai K, Suzuki M, Cattran D (1997) Association of angiotensinogen gene T235 variant with progression of IgA nephropathy in Caucasian patients. J Clin Invest 15:814–820CrossRef
26.
go back to reference Perna A, Ruggenenti P, Testa A, Spoto B, Benini R, Misefari V, Remuzzi G, Zoccali C (2000) ACE genotype and ACE inhibitors induced renoprotection in chronic proteinuric nephropathies. Kidney Int 57:274–281CrossRefPubMed Perna A, Ruggenenti P, Testa A, Spoto B, Benini R, Misefari V, Remuzzi G, Zoccali C (2000) ACE genotype and ACE inhibitors induced renoprotection in chronic proteinuric nephropathies. Kidney Int 57:274–281CrossRefPubMed
27.
go back to reference Pullmann R, Lukác J, Skerenová M, Rovensky J, Hybenová J, Melus V, Velec S, Pulmann R, Hyrdel R (1999) Association between lupus erythematosus and insertion/deletion polymorphism of the angiotensin converting enzyme (ACE) gene. Clin Exp Rheum 17:593–596 Pullmann R, Lukác J, Skerenová M, Rovensky J, Hybenová J, Melus V, Velec S, Pulmann R, Hyrdel R (1999) Association between lupus erythematosus and insertion/deletion polymorphism of the angiotensin converting enzyme (ACE) gene. Clin Exp Rheum 17:593–596
28.
go back to reference Schmidt S, Stier E, Hartung R, Stein G, Bahnisch J, Woodroffe AJ, Clarkson AR, Ponticelli C, Campise M, Mayer G, Ganten D, Ritz E (1995) No associations of converting enzyme insertion/deletion polymorphism with immunoglobulin A glomerulonephritis. Am J Kidney Dis 26:727–731PubMed Schmidt S, Stier E, Hartung R, Stein G, Bahnisch J, Woodroffe AJ, Clarkson AR, Ponticelli C, Campise M, Mayer G, Ganten D, Ritz E (1995) No associations of converting enzyme insertion/deletion polymorphism with immunoglobulin A glomerulonephritis. Am J Kidney Dis 26:727–731PubMed
29.
go back to reference Frimat L, Philippe C, Maghakian M, Jonveaux P, Ligny BH, Guillemin F, Kessler M (2000) Polymorphism of angiotensin converting enzyme, angiotensinogen, and angiotensin II type 1 receptor genes and end stage renal failure in IgA nephropathy. J Am Soc Nephrol 11:2062–2067PubMed Frimat L, Philippe C, Maghakian M, Jonveaux P, Ligny BH, Guillemin F, Kessler M (2000) Polymorphism of angiotensin converting enzyme, angiotensinogen, and angiotensin II type 1 receptor genes and end stage renal failure in IgA nephropathy. J Am Soc Nephrol 11:2062–2067PubMed
30.
go back to reference Perticone F, Ceravolo R, Maio R, Ventura G, Zingone A, Perrotti N, Mattioli PL (1998) Angiotensin-converting enzyme gene polymorphism is associated with endothelium-dependent vasodilation in never treated hypertensive patients. Hypertension 31:900–905PubMed Perticone F, Ceravolo R, Maio R, Ventura G, Zingone A, Perrotti N, Mattioli PL (1998) Angiotensin-converting enzyme gene polymorphism is associated with endothelium-dependent vasodilation in never treated hypertensive patients. Hypertension 31:900–905PubMed
31.
go back to reference Dudley J, Afifi E, Gardner A, Tizard EJ, McGraw ME (2000) Polymorphism of the ACE gene in Henoch–Schönlein purpura nephritis. Pediatr Nephrol 14:218–220CrossRefPubMed Dudley J, Afifi E, Gardner A, Tizard EJ, McGraw ME (2000) Polymorphism of the ACE gene in Henoch–Schönlein purpura nephritis. Pediatr Nephrol 14:218–220CrossRefPubMed
32.
go back to reference Amoroso A, Danek G, Vatta S, Crovella S, Berrino M, Guarrera S, Fasono M, Mazzola G, Amore A, Gianoglia B, Peruzzi L, Coppo R (1998) Polymorphisms in angiotensin-converting enzyme gene and severity of renal disease in Henoch–Schoenlein patients. Nephrol Dial Transplant 13:3184–3188CrossRefPubMed Amoroso A, Danek G, Vatta S, Crovella S, Berrino M, Guarrera S, Fasono M, Mazzola G, Amore A, Gianoglia B, Peruzzi L, Coppo R (1998) Polymorphisms in angiotensin-converting enzyme gene and severity of renal disease in Henoch–Schoenlein patients. Nephrol Dial Transplant 13:3184–3188CrossRefPubMed
33.
go back to reference Maruyama K, Yoshida M, Nishio H, Shirakawa T, Kawamura T, Tanaka R, Nakamura H, Iijima K, Yoshikawa N (2001) Polymorphisms of the renin–angiotensin system genes in childhood IgA nephropathy. Pediatr Nephrol 16:350–355CrossRefPubMed Maruyama K, Yoshida M, Nishio H, Shirakawa T, Kawamura T, Tanaka R, Nakamura H, Iijima K, Yoshikawa N (2001) Polymorphisms of the renin–angiotensin system genes in childhood IgA nephropathy. Pediatr Nephrol 16:350–355CrossRefPubMed
Metadata
Title
Renin–angiotensin system gene polymorphisms: association with susceptibility to Henoch–Schonlein purpura and renal involvement
Authors
Ozan Özkaya
Oğuz Söylemezoğlu
Sevim Gönen
Müge Mısırlıoğlu
Serdar Tuncer
Süleyman Kalman
Necla Buyan
Enver Hasanoğlu
Publication date
01-11-2006
Publisher
Springer-Verlag
Published in
Clinical Rheumatology / Issue 6/2006
Print ISSN: 0770-3198
Electronic ISSN: 1434-9949
DOI
https://doi.org/10.1007/s10067-006-0207-4

Other articles of this Issue 6/2006

Clinical Rheumatology 6/2006 Go to the issue
Live Webinar | 27-06-2024 | 18:00 (CEST)

Keynote webinar | Spotlight on medication adherence

Live: Thursday 27th June 2024, 18:00-19:30 (CEST)

WHO estimates that half of all patients worldwide are non-adherent to their prescribed medication. The consequences of poor adherence can be catastrophic, on both the individual and population level.

Join our expert panel to discover why you need to understand the drivers of non-adherence in your patients, and how you can optimize medication adherence in your clinics to drastically improve patient outcomes.

Prof. Kevin Dolgin
Prof. Florian Limbourg
Prof. Anoop Chauhan
Developed by: Springer Medicine
Obesity Clinical Trial Summary

At a glance: The STEP trials

A round-up of the STEP phase 3 clinical trials evaluating semaglutide for weight loss in people with overweight or obesity.

Developed by: Springer Medicine