Glucokinase Regulatory Protein (GCKR) plays a central role regulating both hepatic triglyceride and glucose metabolism. Fatty acids are key metabolic regulators, which interact with genetic factors and influence glucose metabolism and other metabolic traits. Omega-3 polyunsaturated fatty acids (n-3 PUFA) have been of considerable interest, due to their potential to reduce metabolic syndrome (MetS) risk. Objective To examine whether genetic variability at the GCKR gene locus was associated with the degree of insulin resistance, plasma concentrations of C-reactive protein (CRP) and n-3 PUFA in MetS subjects. Design Homeostasis model assessment of insulin resistance (HOMA-IR), HOMA-B, plasma concentrations of C-peptide, CRP, fatty acid...
Background: Progression of the metabolic syndrome (MetS) is determined by genetic and environmental ...
BACKGROUND: Progression of the metabolic syndrome (MetS) is determined by genetic and environmental ...
OBJECTIVE Small molecules that disrupt the binding between glucokinase and glucokinase regulatory pr...
Glucokinase Regulatory Protein (GCKR) plays a central role regulating both hepatic triglyceride and ...
Glucokinase Regulatory Protein (GCKR) plays a central role regulating both hepatic triglyceride and ...
Glucokinase Regulatory Protein (GCKR) plays a central role regulating both hepatic triglyceride and ...
Dietary n-3 long-chain PUFAs (LC-PUFAs) are associated with improvement in the parameters of the met...
Background & aims: Genetic background may interact with habitual dietary fat composition, and affect...
BACKGROUND & AIMS: Genetic background may interact with habitual dietary fat composition, and af...
Background: Metabolic syndrome (MetS) is characterized by a combination of cardio-metabolic risk fac...
Genome-wide association studies (GWAS) have generated considerable interest in glucokinase regulator...
OBJECTIVE-Using the genome-wide association approach, we recently identified the glucokinase regulat...
BACKGROUND: Variants in gene encoding glucokinase regulator protein (GCKR) were found to have conver...
Introduction: The consumption of long-chain omega-3 polyunsaturated fatty acids (n-3 PUFA) has been ...
Background: Progression of the metabolic syndrome (MetS) is determined by genetic and environmental ...
BACKGROUND: Progression of the metabolic syndrome (MetS) is determined by genetic and environmental ...
OBJECTIVE Small molecules that disrupt the binding between glucokinase and glucokinase regulatory pr...
Glucokinase Regulatory Protein (GCKR) plays a central role regulating both hepatic triglyceride and ...
Glucokinase Regulatory Protein (GCKR) plays a central role regulating both hepatic triglyceride and ...
Glucokinase Regulatory Protein (GCKR) plays a central role regulating both hepatic triglyceride and ...
Dietary n-3 long-chain PUFAs (LC-PUFAs) are associated with improvement in the parameters of the met...
Background & aims: Genetic background may interact with habitual dietary fat composition, and affect...
BACKGROUND & AIMS: Genetic background may interact with habitual dietary fat composition, and af...
Background: Metabolic syndrome (MetS) is characterized by a combination of cardio-metabolic risk fac...
Genome-wide association studies (GWAS) have generated considerable interest in glucokinase regulator...
OBJECTIVE-Using the genome-wide association approach, we recently identified the glucokinase regulat...
BACKGROUND: Variants in gene encoding glucokinase regulator protein (GCKR) were found to have conver...
Introduction: The consumption of long-chain omega-3 polyunsaturated fatty acids (n-3 PUFA) has been ...
Background: Progression of the metabolic syndrome (MetS) is determined by genetic and environmental ...
BACKGROUND: Progression of the metabolic syndrome (MetS) is determined by genetic and environmental ...
OBJECTIVE Small molecules that disrupt the binding between glucokinase and glucokinase regulatory pr...