AKT1 polymorphisms are associated with risk for metabolic syndrome

被引:0
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作者
Joseph M. Devaney
Heather Gordish-Dressman
Brennan T. Harmon
Margaret K. Bradbury
Stephanie A. Devaney
Tamara B. Harris
Paul D. Thompson
Priscilla M. Clarkson
Thomas B. Price
Theodore J. Angelopoulos
Paul M. Gordon
Niall M. Moyna
Linda S. Pescatello
Paul S. Visich
Robert F. Zoeller
Richard L. Seip
Jinwook Seo
Bo Hyoung Kim
Laura L. Tosi
Melissa Garcia
Rongling Li
Joseph M. Zmuda
Matthew J. Delmonico
Robert S. Lindsay
Barbara V. Howard
William E. Kraus
Eric P. Hoffman
机构
[1] Research Center for Genetic Medicine,Department of Integrative Systems Biology
[2] Children’s National Medical Center,Division of Cardiology
[3] National Institute of Aging,Department of Kinesiology
[4] National Institutes of Health,Department of Diagnostic Radiology
[5] Henry Low Heart Center,Department of Health Professions, Center for Lifestyle Medicine
[6] Hartford Hospital,Laboratory for Physical Activity and Exercise Intervention Research
[7] University of Massachusetts,Department of Sport Science and Health
[8] Yale University School of Medicine,School of Allied Health
[9] University of Central Florida,Human Performance Laboratory
[10] University of Michigan,Department of Exercise Science and Health Promotion
[11] Dublin City University,Orthopedic Surgery and Sports Medicine
[12] University of Connecticut,Department of Preventive Medicine
[13] Central Michigan University,Department of Epidemiology and Human Genetics
[14] Florida Atlantic University,Department of Kinesiology
[15] INFINITT Technology,Faculty of Medicine
[16] Children’s National Medical Center,Duke Center for Living
[17] University of Tennessee,undefined
[18] University of Pittsburgh,undefined
[19] University of Rhode Island,undefined
[20] University of Glasgow,undefined
[21] MedStar Research Institute,undefined
[22] Duke University Medical Center,undefined
来源
Human Genetics | 2011年 / 129卷
关键词
Insulin Resistance; Metabolic Syndrome; Fasting Glucose; Increase Insulin Resistance; Peak Oxygen Consumption;
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学科分类号
摘要
Converging lines of evidence suggest that AKT1 is a major mediator of the responses to insulin, insulin-like growth factor 1 (IGF1), and glucose. AKT1 also plays a key role in the regulation of both muscle cell hypertrophy and atrophy. We hypothesized that AKT1 variants may play a role in the endophenotypes that make up metabolic syndrome. We studied a 12-kb region including the first exon of the AKT1 gene for association with metabolic syndrome-related phenotypes in four study populations [FAMUSS cohort (n = 574; age 23.7 ± 5.7 years), Strong Heart Study (SHS) (n = 2,134; age 55.5 ± 7.9 years), Dynamics of Health, Aging and Body Composition (Health ABC) (n = 3,075; age 73.6 ± 2.9 years), and Studies of a Targeted Risk Reduction Intervention through Defined Exercise (STRRIDE) (n = 175; age 40–65 years)]. We identified a three SNP haplotype that we call H1, which represents the ancestral alleles at the three loci and H2, which represents the derived alleles at the three loci. In young adult European Americans (FAMUSS), H1 was associated with higher fasting glucose levels in females. In middle age Native Americans (SHS), H1 carriers showed higher fasting insulin and HOMA in males, and higher BMI in females. In older African-American and European American subjects (Health ABC) H1 carriers showed a higher incidence of metabolic syndrome. Homozygotes for the H1 haplotype showed about twice the risk of metabolic syndrome in both males and females (p < 0.001). In middle-aged European Americans with insulin resistance (STRRIDE) studied by intravenous glucose tolerance test (IVGTT), H1 carriers showed increased insulin resistance due to the Sg component (p = 0.021). The 12-kb haplotype is a risk factor for metabolic syndrome and insulin resistance that needs to be explored in further populations.
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页码:129 / 139
页数:10
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