ArticleFrontiers in endocrinology2023
Hexokinase-linked glycolytic overload and unscheduled glycolysis in hyperglycemia-induced pathogenesis of insulin resistance, beta-cell glucotoxicity, and diabetic vascular complications.
Article in Frontiers in endocrinology, 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 17 papers.
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Who cites it
17 citing papers in PubMed, 21 citations in OpenAlex.
- Association Between Serum Amylin, Irisin, and Sirtuin 1 in Male Patients with Type 2 Diabetes and Diabetic Nephropathy.International journal of endocrinology and metabolism · 2027Article
- Gene regulatory network analysis identifies auranofin as an anti-atherosclerotic drug.Nature communications · 2026Article
- Sugar Shockwaves: How the Fructose-Glucose-ChREBP Pathway Hijacks Liver Metabolism.Life (Basel, Switzerland) · 2026Review
- Hexokinase 3 promoted cytokine production of monocytes by targeting metabolic reprogramming and histone lactylation in sepsis.Clinical epigenetics · 2026Article
- HDAC3 mediates retinal endothelial cell metabolic reprogramming and angiogenesis.Acta pharmacologica Sinica · 2026Article
- Biochemical-Cellular crosstalk in diabetes: exploring pathways driving microvascular complications.Molecular biology reports · 2026Review
- Role and mechanisms of vascular smooth muscle cell phenotypic transition in diabetic macrovascular complications.Biological research · 2026Review
- GLP-1 receptor and Mitochondria-ER Contact Sites: an emerging mechanism of metabolic regulation.Frontiers in physiology · 2026Review
- Global research trends and hotspots evolution in type 2 diabetes mellitus complicated with coronary heart disease: a bibliometric analysis from 2016 to 2026.Frontiers in endocrinology · 2026Review
- Molecular mechanisms of metabolic dysfunction-associated steatotic liver disease (MASLD): functional analysis of glucose and fructose metabolism pathways.Clinical science (London, England : 1979) · 2025Review
- Overload of Glucose Metabolism as Initiating Factor in Diabetic Embryopathy and Prevention by Glyoxalase 1 Inducer Dietary Supplement.Antioxidants (Basel, Switzerland) · 2025Article
- Glyoxalase 1 Inducer,Antioxidants (Basel, Switzerland) · 2025Article
- Mitigating renal dysfunction in liver cirrhosis: Therapeutic role of ferrous sulphate, folic acid, and its co-administration.Toxicology reports · 2025Article
- Exploring cutting-edge approaches in diabetes care: from nanotechnology to personalized therapeutics.Naunyn-Schmiedeberg's archives of pharmacology · 2025Review
- Exploring glycolytic enzymes in disease: potential biomarkers and therapeutic targets in neurodegeneration, cancer and parasitic infections.Open biology · 2025Review
- Ethyl acetate extract ofFrontiers in pharmacology · 2025Article
- Diabetic encephalopathy: metabolic reprogramming as a potential driver of accelerated brain aging and cognitive decline.Frontiers in cell and developmental biology · 2025Review
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Authors and funding
2 authors at 2 institutions in 1 country.
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Abstract
Hyperglycemia is a risk factor for the development of insulin resistance, beta-cell glucotoxicity, and vascular complications of diabetes. We propose the hypothesis, hexokinase-linked glycolytic overload and unscheduled glycolysis, in explanation. Hexokinases (HKs) catalyze the first step of glucose metabolism. Increased flux of glucose metabolism through glycolysis gated by HKs, when occurring without concomitant increased activity of glycolytic enzymes-unscheduled glycolysis-produces increased levels of glycolytic intermediates with overspill into effector pathways of cell dysfunction and pathogenesis. HK1 is saturated with glucose in euglycemia and, where it is the major HK, provides for basal glycolytic flux without glycolytic overload. HK2 has similar saturation characteristics, except that, in persistent hyperglycemia, it is stabilized to proteolysis by high intracellular glucose concentration, increasing HK activity and initiating glycolytic overload and unscheduled glycolysis. This drives the development of vascular complications of diabetes. Similar HK2-linked unscheduled glycolysis in skeletal muscle and adipose tissue in impaired fasting glucose drives the development of peripheral insulin resistance. Glucokinase (GCK or HK4)-linked glycolytic overload and unscheduled glycolysis occurs in persistent hyperglycemia in hepatocytes and beta-cells, contributing to hepatic insulin resistance and beta-cell glucotoxicity, leading to the development of type 2 diabetes. Downstream effector pathways of HK-linked unscheduled glycolysis are mitochondrial dysfunction and increased reactive oxygen species (ROS) formation; activation of hexosamine, protein kinase c, and dicarbonyl stress pathways; and increased Mlx/Mondo A signaling. Mitochondrial dysfunction and increased ROS was proposed as the initiator of metabolic dysfunction in hyperglycemia, but it is rather one of the multiple downstream effector pathways. Correction of HK2 dysregulation is proposed as a novel therapeutic target. Pharmacotherapy addressing it corrected insulin resistance in overweight and obese subjects in clinical trial. Overall, the damaging effects of hyperglycemia are a consequence of HK-gated increased flux of glucose metabolism without increased glycolytic enzyme activities to accommodate it.
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