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DOI: 10.1055/s-0031-1286295
The Promoter Variant -803 G>A in the RBP4 gene is not Associated with BMI, Metabolic Parameters or Blood Pressure in Caucasian Children
Publication History
received 24 January 2011
first decision 11 August 2011
accepted 17 August 2011
Publication Date:
08 November 2011 (online)
Abstract
Objective:
Studies in adults identified the -803 G>A promoter polymorphism (rs3758539) in the RBP4 gene (RBP4) as a functional variant conferring an increased risk for obesity and type 2 diabetes.
Methods:
We genotyped this polymorphism in a cohort of 304 lean and 283 obese children to assess a potential association with early onset obesity and blood pressure and evaluated the effect of this SNP on metabolic parameters in a smaller subset.
Results:
The allele frequency of -803 G>A was similar in obese compared to lean subjects (0.159 vs. 0.191, P=0.318). We did not detect an association of the variant with adiposity parameters nor with parameters of glucose and lipid metabolism or blood pressure in quantitative analyses.
Conclusion:
Our study revealed that the promoter polymorphism -803 G>A in RBP4 is not associated with BMI, metabolic parameters or blood pressure in Caucasian children.
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References
- 1 Balagopal P, Graham TE, Kahn BB et al. Reduction of elevated serum retinol binding protein in obese children by lifestyle intervention: association with subclinical inflammation. J Clin Endocrinol Metab 2007; 92: 1971-1974
- 2 Chiba M, Saitoh S, Ohnishi H et al. Associations of metabolic factors, especially serum retinol-binding protein 4 (RBP4), with blood pressure in Japanese – the Tanno and Sobetsu study. Endocr J 2010; 57: 811-817
- 3 Craig RL, Chu WS, Elbein SC. Retinol binding protein 4 as a candidate gene for type 2 diabetes and prediabetic intermediate traits. Mol Genet Metab 2007; 90: 338-344
- 4 Duggirala R, Almasy L, Blangero J et al. Further evidence for a type 2 diabetes susceptibility locus on chromosome 11q. Genet Epidemiol 2003; 24: 240-242
- 5 Friebe D, Neef M, Erbs S et al. Retinol binding protein 4 (RBP4) is primarily associated with adipose tissue mass in children. Int J Pediatr Obes 2010; [Epub ahead of print]
- 6 Gomez-Ambrosi J, Rodriguez A, Catalan V et al. Serum retinol-binding protein 4 is not increased in obesity or obesity-associated type 2 diabetes mellitus, but is reduced after relevant reductions in body fat following gastric bypass. Clin Endocrinol (Oxf) 2008; 69: 208-215
- 7 Graham TE, Yang Q, Blüher M et al. Retinol-binding protein 4 and insulin resistance in lean, obese, and diabetic subjects. N Engl J Med 2006; 354: 2552-2563
- 8 Hennig BJ, Fulford AJ, Sirugo G et al. FTO gene variation and measures of body mass in an African population. BMC Med Genet 2009; 10: 21
- 9 Hermsdorff HH, Zulet MA, Puchau B et al. Association of retinol-binding protein-4 with dietary selenium intake and other lifestyle features in young healthy women. Nutrition 2009; 25: 392-399
- 10 Hu C, Jia W, Zhang R et al. Effect of RBP4 gene variants on circulating RBP4 concentration and type 2 diabetes in a Chinese population. Diabet Med 2008; 25: 11-18
- 11 Körner A, Berndt J, Stumvoll M et al. TCF7L2 gene polymorphisms confer an increased risk for early impairment of glucose metabolism and increased height in obese children. J Clin Endocrinol Metab 2007; 92: 1956-1960
- 12 Kovacs P, Geyer M, Berndt J et al. Effects of genetic variation in the human retinol binding protein-4 gene (RBP4) on insulin resistance and fat depot-specific mRNA expression. Diabetes 2007; 56: 3095-3100
- 13 Kromeyer-Hauschild K, Wabitsch M, Geller FJ et al. Perzentilen für den Body Mass Index für das Kindes- und Jugendalter unter Heranziehung verschiedener deutscher Stichproben. (Centiles for body mass index for children and adolescents derived from distinct independent German cohorts). Monatsschr Kinderheilkd 2001; 149: 807-818
- 14 Meigs JB, Panhuysen CI, Myers RH et al. A genome-wide scan for loci linked to plasma levels of glucose and HbA(1c) in a community-based sample of Caucasian pedigrees: The Framingham Offspring Study. Diabetes 2002; 51: 833-840
- 15 Munkhtulga L, Nagashima S, Nakayama K et al. Regulatory SNP in the RBP4 gene modified the expression in adipocytes and associated with BMI. Obesity (Silver Spring) 2010; 18: 1006-1014
- 16 Munkhtulga L, Nakayama K, Utsumi N et al. Identification of a regulatory SNP in the retinol binding protein 4 gene associated with type 2 diabetes in Mongolia. Hum Genet 2007; 120: 879-888
- 17 Ohashi J, Naka I, Kimura R et al. FTO polymorphisms in oceanic populations. J Hum Genet 2007; 52: 1031-1035
- 18 Reich A, Muller G, Gelbrich G et al. Obesity and blood pressure – results from the examination of 2365 schoolchildren in Germany. Int J Obes Relat Metab Disord 2003; 27: 1459-1464
- 19 Ribel-Madsen R, Friedrichsen M, Vaag A et al. Retinol-binding protein 4 in twins: regulatory mechanisms and impact of circulating and tissue expression levels on insulin secretion and action. Diabetes 2009; 58: 54-60
- 20 Shea JL, Loredo-Osti JC, Sun G. Association of RBP4 gene variants and serum HDL cholesterol levels in the Newfoundland population. Obesity (Silver Spring) 2010; 18: 1393-1397
- 21 van Hoek M, Dehghan A, Zillikens MC et al. An RBP4 promoter polymorphism increases risk of type 2 diabetes. Diabetologia 2008; 51: 1423-1428
- 22 Wu Y, Li H, Loos RJ et al. RBP4 variants are significantly associated with plasma RBP4 levels and hypertriglyceridemia risk in Chinese Hans. J Lipid Res 2009; 50: 1479-1486
- 23 Yang Q, Graham TE, Mody N et al. Serum retinol binding protein 4 contributes to insulin resistance in obesity and type 2 diabetes. Nature 2005; 436: 356-362