Genetic and Molecular Insights Into the Role of PROX1 in Glucose Metabolism

Author:

Lecompte Sophie1,Pasquetti Gianni1,Hermant Xavier1,Grenier-Boley Benjamin1,Gonzalez-Gross Marcela23,De Henauw Stephan45,Molnar Denes6,Stehle Peter3,Béghin Laurent78,Moreno Luis A.9,Amouyel Philippe1,Dallongeville Jean1,Meirhaeghe Aline1

Affiliation:

1. INSERM U744, Institut Pasteur de Lille, Université Lille Nord de France, UDSL, Lille, France

2. Department of Health and Human Performance, Faculty of Physical Activity and Sport Sciences, Universidad Politécnica de Madrid, Madrid, Spain

3. Department of Nutrition and Food Sciences, University of Bonn, Bonn, Germany

4. Ghent University, Department of Public Health, Ghent University Hospital, Ghent, Belgium

5. University College Ghent, Department of Nutrition and Dietetics, Faculty of Health Care Vesalius, Ghent, Belgium

6. Department of Paediatrics, Medical Faculty, University of Pécs, Pécs, Hungary

7. INSERM U955, IFR114, Faculty of Medicine, Université Lille 2, Lille, France

8. CIC-9301-INSERM-CHRU de Lille, Lille, France

9. GENUD (Growth, Exercise, Nutrition and Development) Research Group, Escuela Universitaria de Ciencias de la Salud, Universidad de Zaragoza, Zaragoza, Spain

Abstract

Genome-wide association studies have shown that the rs340874 single nucleotide polymorphism (SNP) in PROX1 is a genetic susceptibility factor for type 2 diabetes. We conducted genetic and molecular studies to better understand the role of PROX1 in type 2 diabetes. We assessed the impact of the whole common genetic variability of PROX1 (80 SNPs) on type 2 diabetes–related biochemical traits in the HELENA (Healthy Lifestyle in Europe by Nutrition in Adolescence) study (n = 1,155). Three SNPs (rs340838, rs340837, and rs340836) were significantly associated with fasting plasma insulin levels (P ≤ 0.00295). We evaluated the impact of nine PROX1 SNPs (the three insulin-associated SNPs plus six SNPs in strong linkage disequilibrium) on luciferase reporter gene expression. The insulin-lowering alleles of rs340874, rs340873, and rs340835 were associated with lower luciferase activity in MIN6 and HepG2 cells (except for rs340874, which was in HepG2 cells only). Electrophoretic mobility shift assays indicated that specific nuclear protein bindings occur at the three SNPs in HepG2 cells, with allele-binding differences for rs340874. We also showed that the knockdown of Prox1 expression by small interfering RNAs in INS-1E cells resulted in a 1.7-fold reduction in glucose-stimulated insulin secretion. All together, we propose that reduced expression of PROX1 by cis-regulatory variants results in altered β-cell insulin secretion and thereby confers susceptibility to type 2 diabetes.

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

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