Adipose Tissue TCF7L2 Splicing Is Regulated by Weight Loss and Associates With Glucose and Fatty Acid Metabolism

被引:56
作者
Kaminska, Dorota [1 ,2 ]
Kuulasmaa, Tiina [2 ]
Venesmaa, Sari [4 ]
Kakela, Pirjo [4 ]
Vaittinen, Maija [1 ]
Pulkkinen, Leena [1 ]
Paakkonen, Matti [4 ]
Gylling, Helena [1 ]
Laakso, Markku [2 ]
Pihlajamaki, Jussi [1 ,3 ]
机构
[1] Univ Eastern Finland, Inst Publ Hlth & Clin Nutr, Kuopio, Finland
[2] Univ Eastern Finland, Dept Med, Kuopio, Finland
[3] Kuopio Univ Hosp, Clin Nutr & Obes Ctr, SF-70210 Kuopio, Finland
[4] Univ Eastern Finland, Dept Surg, Kuopio, Finland
基金
芬兰科学院;
关键词
HUMAN PANCREATIC-ISLETS; DIABETES-MELLITUS; GENE; VARIANTS; RISK; PATHWAY; BINDING; TARGETS; HUMANS; DOMAIN;
D O I
10.2337/db12-0239
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
We investigated the effects of obesity surgery-induced weight loss on transcription factor 7-like 2 gene (TCF7L2) alternative splicing in adipose tissue and liver. Furthermore, we determined the association of TCF7L2 splicing with the levels of plasma glucose and serum free fatty acids (FFAs) in three independent studies (n = 216). Expression of the short mRNA variant, lacking exons 12, 13, and 13a, decreased after weight loss in subcutaneous fat (n = 46) and liver (n = 11) and was more common in subcutaneous fat of subjects with type 2 diabetes than in subjects with normal glucose tolerance in obese individuals (n = 54) and a population-based sample (n = 49). Additionally, there was a positive correlation between this variant and the level of fasting glucose in nondiabetic individuals (n = 113). This association between TCF7L2 splicing and plasma glucose was independent of the TCF7L2 genotype. Finally, this variant was associated with high levels of serum FFAs during hyperinsulinemia, suggesting impaired insulin action in adipose tissue, whereas no association with insulin secretion or insulin-stimulated whole-body glucose uptake was observed. Our study shows that the short TCF7L2 mRNA variant in subcutaneous fat is regulated by weight loss and is associated with hyperglycemia and impaired insulin action in adipose tissue. Diabetes 61:2807-2813, 2012
引用
收藏
页码:2807 / 2813
页数:7
相关论文
共 26 条
[1]   A new β-catenin-dependent activation domain in T cell factor [J].
Atcha, FA ;
Munguia, JE ;
Li, TWH ;
Hovanes, K ;
Waterman, ML .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (18) :16169-16175
[2]   A unique DNA binding domain converts T-cell factors into strong Wnt effectors [J].
Atcha, Fawzia A. ;
Syed, Adeela ;
Wu, Beibei ;
Hoverter, Nate P. ;
Yokoyama, Noriko N. ;
Ting, Ju-Hui T. ;
Munguia, Jesus E. ;
Mangalam, Harry J. ;
Marsh, J. Lawrence ;
Waterman, Marian L. .
MOLECULAR AND CELLULAR BIOLOGY, 2007, 27 (23) :8352-8363
[3]   C-terminal-binding protein directly activates and represses Wnt transcriptional targets in Drosophila [J].
Fang, Ming ;
Li, Jiong ;
Blauwkamp, Timothy ;
Bhambhani, Chandan ;
Campbell, Nathan ;
Cadigan, Ken M. .
EMBO JOURNAL, 2006, 25 (12) :2735-2745
[4]   Pre-mRNA splicing and human disease [J].
Faustino, NA ;
Cooper, TA .
GENES & DEVELOPMENT, 2003, 17 (04) :419-437
[5]   TCF7L2 polymorphisms and progression to diabetes in the Diabetes Prevention Program [J].
Florez, Jose C. ;
Jablonski, Kathleen A. ;
Bayley, Nick ;
Pollin, Toni I. ;
de Bakker, Paul I. W. ;
Shuldiner, Alan R. ;
Knowler, William C. ;
Nathan, David M. ;
Altshuler, David .
NEW ENGLAND JOURNAL OF MEDICINE, 2006, 355 (03) :241-250
[6]   A map of open chromatin in human pancreatic islets [J].
Gaulton, Kyle J. ;
Nammo, Takao ;
Pasquali, Lorenzo ;
Simon, Jeremy M. ;
Giresi, Paul G. ;
Fogarty, Marie P. ;
Panhuis, Tami M. ;
Mieczkowski, Piotr ;
Secchi, Antonio ;
Bosco, Domenico ;
Berney, Thierry ;
Montanya, Eduard ;
Mohlke, Karen L. ;
Lieb, Jason D. ;
Ferrer, Jorge .
NATURE GENETICS, 2010, 42 (03) :255-U41
[7]   Variant of transcription factor 7-like 2 (TCF7L2) gene confers risk of type 2 diabetes [J].
Grant, SFA ;
Thorleifsson, G ;
Reynisdottir, I ;
Benediktsson, R ;
Manolescu, A ;
Sainz, J ;
Helgason, A ;
Stefansson, H ;
Emilsson, V ;
Helgadottir, A ;
Styrkarsdottir, U ;
Magnusson, KP ;
Walters, GB ;
Palsdottir, E ;
Jonsdottir, T ;
Gudmundsdottir, T ;
Gylfason, A ;
Saemundsdottir, J ;
Wilensky, RL ;
Reilly, MP ;
Rader, DJ ;
Bagger, Y ;
Christiansen, C ;
Gudnason, V ;
Sigurdsson, G ;
Thorsteinsdottir, U ;
Gulcher, JR ;
Kong, A ;
Stefansson, K .
NATURE GENETICS, 2006, 38 (03) :320-323
[8]   Association analysis of 6,736 UK subjects provides replication and confirms TCF7L2 as a type 2 diabetes susceptibility gene with a substantial effect on individual risk [J].
Groves, Christopher J. ;
Zeggini, Eleftheria ;
Minton, Jayne ;
Frayling, Timothy M. ;
Weedon, Michael N. ;
Rayner, Nigel W. ;
Hitman, Graham A. ;
Walker, Mark ;
Wiltshire, Steven ;
Hattersley, Andrew T. ;
McCarthy, Mark I. .
DIABETES, 2006, 55 (09) :2640-2644
[9]   Refining the impact of TCF7L2 gene variants on type 2 diabetes and adaptive evolution [J].
Helgason, Agnar ;
Palsson, Snaebjorn ;
Thorleifsson, Gudmar ;
Grant, Struan F. A. ;
Emilsson, Valur ;
Gunnarsdottir, Steinunn ;
Adeyemo, Adebowale ;
Chen, Yuanxiu ;
Chen, Guanjie ;
Reynisdottir, Inga ;
Benediktsson, Rafn ;
Hinney, Anke ;
Hansen, Torben ;
Andersen, Gitte ;
Borch-Johnsen, Knut ;
Jorgensen, Torben ;
Schaefer, Helmut ;
Faruque, Mezbah ;
Doumatey, Ayo ;
Zhou, Jie ;
Wilensky, Robert L. ;
Reilly, Muredach P. ;
Rader, Daniel J. ;
Bagger, Yu ;
Christiansen, Claus ;
Sigurdsson, Gunnar ;
Hebebrand, Johannes ;
Pedersen, Oluf ;
Thorsteinsdottir, Unnur ;
Gulcher, Jeffrey R. ;
Kong, Augustine ;
Rotimi, Charles ;
Stefansson, Kari .
NATURE GENETICS, 2007, 39 (02) :218-225
[10]   TCF7L2 splice variants have distinct effects on β-cell turnover and function [J].
Le Bacquer, Olivier ;
Shu, Luan ;
Marchand, Marion ;
Neve, Bernadette ;
Paroni, Federico ;
Conte, Julie Kerr ;
Pattou, Francois ;
Froguel, Philippe ;
Maedler, Kathrin .
HUMAN MOLECULAR GENETICS, 2011, 20 (10) :1906-1915