ReviewCellular & molecular biology letters2024
Glucokinase (GCK) in diabetes: from molecular mechanisms to disease pathogenesis.
Review in Cellular & molecular biology letters, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 35 papers.
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Who cites it
35 citing papers in PubMed.
- Long Noncoding RNA PCALRx Interacts with Pyruvate Carboxylase to Drive Multi-Organ Developmental Toxicity in Zebrafish Embryos Exposed to Amoxicillin.Advanced science (Weinheim, Baden-Wurttemberg, Germany) · 2026Article
- Article
- In vitro assessment of the impact of di(2-ethylhexyl) phthalate and its metabolites on the function and transcription of key glucose sensing proteins in a rat pancreatic β-cell line.BMC research notes · 2026Article
- Emerging Insights into the Liver-Pancreas Axis: A Central Hub in the Pathogenesis of Diabetes and Metabolic Diseases.Biomolecules · 2026Review
- Cell-specific DNA methylation in human alpha and beta cells regulates gene expression in type 2 diabetes.Nature metabolism · 2026Article
- Association of GCKR and GLIS3 gene polymorphisms with gestational diabetes mellitus: A case-control study.The Indian journal of medical research · 2026Article
- Article
- Diabetes: A comprehensive review of the Indian landscape in contrast with global trends.World journal of diabetes · 2026Review
- Article
- Case Report: A novel likely pathogenicFrontiers in endocrinology · 2026Article
- Personalized management of glucokinase-related monogenic diabetes (GCK-MODY) during pregnancy: a case report.Frontiers in endocrinology · 2026Article
- Molecular mechanisms and structure-activity relationships of natural polysaccharides in ameliorating type 2 diabetes mellitus: a comprehensive review.Frontiers in nutrition · 2026Review
- From toxicogenomics data to cumulative assessment groups: a framework for chemical grouping.Archives of toxicology · 2026Article
- Article
- Article
- Case Report: Identification of aFrontiers in endocrinology · 2026Article
- Morning glucagon disrupts insulin induced hepatic metabolic memory and subsequent afternoon glucose metabolism in canines.Frontiers in endocrinology · 2026Article
- Multifaceted functions of transcription regulatory factor X6 (RFX6): from pancreatic development to cancer progression.Cancer cell international · 2025Review
- Glucokinase activators contribute to gastrointestinal disease risks through metabolic-immune interplay in the gut-liver axis: insights from a multi-omics study.Acta diabetologica · 2025Article
- Bridging pancreatic and hepatic development: overlapping genes and their role in diabetes.Cellular & molecular biology letters · 2025Review
Corrections and comments
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Authors and funding
7 authors.
Funding
Abstract
Glucokinase (GCK), a key enzyme in glucose metabolism, plays a central role in glucose sensing and insulin secretion in pancreatic β-cells, as well as glycogen synthesis in the liver. Mutations in the GCK gene have been associated with various monogenic diabetes (MD) disorders, including permanent neonatal diabetes mellitus (PNDM) and maturity-onset diabetes of the young (MODY), highlighting its importance in maintaining glucose homeostasis. Additionally, GCK gain-of-function mutations lead to a rare congenital form of hyperinsulinism known as hyperinsulinemic hypoglycemia (HH), characterized by increased enzymatic activity and increased glucose sensitivity in pancreatic β-cells. This review offers a comprehensive exploration of the critical role played by the GCK gene in diabetes development, shedding light on its expression patterns, regulatory mechanisms, and diverse forms of associated monogenic disorders. Structural and mechanistic insights into GCK's involvement in glucose metabolism are discussed, emphasizing its significance in insulin secretion and glycogen synthesis. Animal models have provided valuable insights into the physiological consequences of GCK mutations, although challenges remain in accurately recapitulating human disease phenotypes. In addition, the potential of human pluripotent stem cell (hPSC) technology in overcoming current model limitations is discussed, offering a promising avenue for studying GCK-related diseases at the molecular level. Ultimately, a deeper understanding of GCK's multifaceted role in glucose metabolism and its dysregulation in disease states holds implications for developing targeted therapeutic interventions for diabetes and related disorders.
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