RAS genes influence exercise-induced left ventricular hypertrophy: an elite athletes study
- 1 November 2000
- journal article
- research article
- Published by Wolters Kluwer Health in Medicine & Science in Sports & Exercise
- Vol. 32 (11) , 1868-1872
- https://doi.org/10.1097/00005768-200011000-00008
Abstract
FATINI, C., R. GUAZZELLI, P. MANETTI, B. BATTAGLINI, F. GENSINI, R. VONO, L. TONCELLI, P. ZILLI, A. CAPALBO, R. ABBATE, G. F. GENSINI, and G. GALANTI. RAS genes influence exercise-induced left ventricular hypertrophy: an elite athletes study. Med. Sci. Sports Exerc., Vol. 32, No. 11, pp. 1868–1872, 2000. The association of ACE I/D polymorphism with changes in LV mass in response to physical training has been observed, but no association has been found with AT1R A1166C polymorphism. We investigated the ACE I/D, AT1R A1166C, and AT1R CA microsatellite polymorphisms genotype distribution in elite athletes and whether the presence of AT1R C1166 variant, in addition to ACE D allele affects the training-induced LV mass alterations in elite trained athletes. The study population comprised 28 healthy players recruited from an Italian elite male soccer team and 155 healthy male subjects. LV mass, LV mass adjusted for body surface area, septal thickness, posterior wall, end-diastolic and end-systolic ventricular dimension, and ejection fraction were determined by echocardiography in pretrained period, at rest and 7 months later during the training. All subjects were genotyped for ACE I/D, AT1R A1166C, and CA microsatellite polymorphisms. Training induced an LV mass increase in all but six athletes. The percentage of athletes in whom an increase of LV mass was found after training was statistically different in relation to the ACE D allele: no increase was observed in three of 24 D allele carriers and in three of four II genotype players (Fisher’s exact test, P = 0.02). As AT1R is concerned, no increase was observed in 4 of 15 C allele carriers and in 2 of 13 AA genotype athletes (Fisher’s exact test, P > 0.05). The contemporary presence of ACE D and AT1R C allele did not affect the changes after training. No difference has been observed in the CA microsatellite marker allele frequencies between athletes and controls ( P = 0.46). In this study, we provide the evidence that soccer play does not select athletes on genotype basis. Training-induced LV mass changes in male elite athletes are significantly associated with the presence of ACE D allele, but not of AT1R C allele.Keywords
This publication has 18 references indexed in Scilit:
- Angiotensinogen gene M235T polymorphism predicts left ventricular hypertrophy in endurance athletesJournal of the American College of Cardiology, 1999
- Elite endurance athletes and the ACE I allele - the role of genes in athletic performanceHuman Genetics, 1998
- Human gene for physical performanceNature, 1998
- Association of Angiotensin-Converting Enzyme Gene I/D Polymorphism With Change in Left Ventricular Mass in Response to Physical TrainingCirculation, 1997
- Deletion polymorphism of the angiotensin-converting enzyme gene is independently associated with left ventricular mass and geometric remodeling in systemic hypertensionThe American Journal of Cardiology, 1996
- Association of angiotensinogen gene T235 variant with increased risk of coronary heart diseaseThe Lancet, 1995
- DD genotype of the angiotensin-converting enzyme gene is a risk factor for left ventricular hypertrophy.Circulation, 1994
- Angiotensin II type 1 receptor gene polymorphisms in human essential hypertension.Hypertension, 1994
- Angiotensin II (type-1) receptor locus: CA repeat polymorphism and genetic mappingHuman Molecular Genetics, 1994
- Echocardiographic assessment of left ventricular hypertrophy: Comparison to necropsy findingsPublished by Elsevier ,1986