TY - JOUR
T1 - FOXC2 mRNA Expression and a 5' untranslated region polymorphism of the gene are associated with insulin resistance
AU - Ridderstråle, Martin
AU - Carlsson, Emma
AU - Klannemark, Mia
AU - Cederberg, Anna
AU - Kösters, Christina
AU - Tornqvist, Hans
AU - Storgaard, Heidi
AU - Vaag, Allan
AU - Enerbäck, Sven
AU - Groop, Leif
PY - 2002/12
Y1 - 2002/12
N2 - The human transcription factor FOXC2 has recently been shown to protect against diet-induced insulin resistance in transgenic mice. We investigated the expression of FOXC2 in fat and muscle and performed a genetic analysis in human subjects. FOXC2 mRNA levels were increased in visceral compared with subcutaneous fat from obese subjects (12 +/- 4-fold; P = 0.0001), and there was a correlation between whole-body insulin sensitivity and FOXC2 mRNA levels in visceral fat (fS-insulin R = -0.64, P = 0.01, and homeostasis model assessment of insulin resistance [HOMA-IR] R = -0.68, P = 0.007) and skeletal muscle (fS-insulin R = -0.57, P = 0.03, and HOMA-IR R = -0.55, P = 0.04). Mutation screening of the FOXC2 gene identified a common polymorphism in the 5' untranslated region (C-512T). The T allele was associated with enhanced insulin sensitivity (HOMA-IR P = 0.007) and lower plasma triglyceride levels in females (P = 0.007). Also, the higher expression of FOXC2 in visceral than in subcutaneous fat was restricted to subjects homozygous for the T allele (P = 0.03 vs. P = 0.7). Our data suggest that increased FOXC2 expression may protect against insulin resistance in human subjects and that genetic variability in the gene may influence features associated with the metabolic syndrome.
AB - The human transcription factor FOXC2 has recently been shown to protect against diet-induced insulin resistance in transgenic mice. We investigated the expression of FOXC2 in fat and muscle and performed a genetic analysis in human subjects. FOXC2 mRNA levels were increased in visceral compared with subcutaneous fat from obese subjects (12 +/- 4-fold; P = 0.0001), and there was a correlation between whole-body insulin sensitivity and FOXC2 mRNA levels in visceral fat (fS-insulin R = -0.64, P = 0.01, and homeostasis model assessment of insulin resistance [HOMA-IR] R = -0.68, P = 0.007) and skeletal muscle (fS-insulin R = -0.57, P = 0.03, and HOMA-IR R = -0.55, P = 0.04). Mutation screening of the FOXC2 gene identified a common polymorphism in the 5' untranslated region (C-512T). The T allele was associated with enhanced insulin sensitivity (HOMA-IR P = 0.007) and lower plasma triglyceride levels in females (P = 0.007). Also, the higher expression of FOXC2 in visceral than in subcutaneous fat was restricted to subjects homozygous for the T allele (P = 0.03 vs. P = 0.7). Our data suggest that increased FOXC2 expression may protect against insulin resistance in human subjects and that genetic variability in the gene may influence features associated with the metabolic syndrome.
KW - 5' Untranslated Regions/genetics
KW - Adipocytes/metabolism
KW - Adipose Tissue/metabolism
KW - Adult
KW - Cells, Cultured
KW - DNA-Binding Proteins/genetics
KW - Female
KW - Forkhead Transcription Factors
KW - Humans
KW - Insulin/pharmacology
KW - Insulin Resistance/genetics
KW - Male
KW - Middle Aged
KW - Muscle, Skeletal/metabolism
KW - Polymorphism, Genetic/physiology
KW - RNA, Messenger/metabolism
KW - Subcutaneous Tissue/metabolism
KW - Transcription Factors/genetics
KW - Up-Regulation
KW - Viscera/metabolism
U2 - 10.2337/diabetes.51.12.3554
DO - 10.2337/diabetes.51.12.3554
M3 - Journal article
C2 - 12453913
SN - 0012-1797
VL - 51
SP - 3554
EP - 3560
JO - Diabetes
JF - Diabetes
IS - 12
ER -