4.7 Article

Top Single Nucleotide Polymorphisms Affecting Carbohydrate Metabolism in Metabolic Syndrome: From the LIPGENE Study

期刊

JOURNAL OF CLINICAL ENDOCRINOLOGY & METABOLISM
卷 99, 期 2, 页码 E384-E389

出版社

ENDOCRINE SOC
DOI: 10.1210/jc.2013-3165

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资金

  1. LIPGENE - an European Union Sixth Framework Program Integrated Project [FOOD-CT-2003-505944]
  2. Spanish Ministry of Science and Innovation [AGL2006-01979/ALI, AGL2009-12270, PI10/01041]
  3. Consejeria de Economia, Innovacion y Ciencia, Proyectos de Investigacion de Excelencia, Junta de Andalucia [P06-CTS-01425]
  4. Consejeria de Salud, Junta de Andalucia [07/43, PI 0193/09, P.I.-0252/2009, PI-0058-2010]
  5. Centro de Excelencia Investigadora en Aceite de Oliva y Salud (CEAS)

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Rationale: Metabolic syndrome (MetS) is a high-prevalence condition characterized by altered energy metabolism, insulin resistance, and elevated cardiovascular risk. Objectives: Although many individual single nucleotide polymorphisms (SNPs) have been linked to certain MetS features, there are few studies analyzing the influence of SNPs on carbohydrate metabolism in MetS. Methods: A total of 904 SNPs (tag SNPs and functional SNPs) were tested for influence on 8 fasting and dynamic markers of carbohydrate metabolism, by performance of an intravenous glucose tolerance test in 450 participants in the LIPGENE study. Findings: From 382 initial gene-phenotype associations between SNPs and any phenotypic variables, 61 (16% of the preselected variables) remained significant after bootstrapping. Top SNPs affecting glucose metabolism variables were as follows: fasting glucose, rs26125 (PPARGC1B); fasting insulin, rs4759277 (LRP1); C-peptide, rs4759277 (LRP1); homeostasis assessment of insulin resistance, rs4759277 (LRP1); quantitative insulin sensitivity check index, rs184003 (AGER); sensitivity index, rs7301876 (ABCC9), acute insulin response to glucose, rs290481 (TCF7L2); and disposition index, rs12691 (CEBPA). Conclusions: We describe here the top SNPs linked to phenotypic features in carbohydrate metabolism among approximately 1000 candidate gene variations in fasting and postprandial samples of 450 patients with MetS from the LIPGENE study.

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