Glycerol-3-phosphate
Reactions involving Glycerol-3-phosphate
Every recorded step where this molecule takes part
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consumed Glycerol-3-phosphate acyltransferase (GPAT) Triacylglycerol Synthesis and Lipolysis ST-0108
Glycerol-3-phosphate + fatty acyl-CoA → lysophosphatidic acid (1-acyl-glycerol-3-phosphate) + CoA-SH
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consumed Mitochondrial glycerol-3-phosphate dehydrogenase (GPD2) Glycerol-3-Phosphate Shuttle ST-0359
Glycerol-3-phosphate + FAD -> dihydroxyacetone phosphate + FADH2
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Glycerol + ATP → glycerol-3-phosphate + ADP
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produced Cytosolic glycerol-3-phosphate dehydrogenase (GPD1) Triacylglycerol Synthesis and Lipolysis ST-0107
Dihydroxyacetone phosphate + NADH + H+ ⇌ glycerol-3-phosphate + NAD+
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produced Glycerol kinase + glycerol-3-phosphate dehydrogenase (hepatic) Triacylglycerol Synthesis and Lipolysis ST-0115
Glycerol + ATP → glycerol-3-phosphate + ADP; glycerol-3-phosphate ⇌ DHAP
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Dihydroxyacetone phosphate + NADH + H+ -> glycerol-3-phosphate + NAD+
Showing all 6 reactions.
Pathway junctions through this molecule
Produced in one pathway, consumed in another
| Produced in | Consumed in | Link | |
|---|---|---|---|
| Glycerol-3-Phosphate Shuttle | → | Triacylglycerol Synthesis and Lipolysis | cross-category |
| Triacylglycerol Synthesis and Lipolysis | → | Glycerol-3-Phosphate Shuttle | cross-category |
Recent literature
Europe PMC · fetched just now · sorted by publication date
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1
Engineering of fructose-6-phosphate aldolase for one-carbon conversion to mannitol in a designed biotransformation system.
Wang D, Dong Q, Chen P, Zeng Y, Liu Y, Sun Y, Tan J, Yang J. · 2026-06-05
open access unreviewed -
2
Identification of proteins interacting with the N-terminal half of endoribonuclease RNase E in <i>Escherichia coli</i>.
Göpel Y, Durica-Mitic S, Boyko S, Dudys P, Amman F, Schnetz K, Görke B. · 2026-06-02
open access unreviewed -
3
The plasma metabolome and clinical features of patients with coeliac disease in Northwest China.
Zhang W, Wu X, Li Y, Huang Z, Hui W, Shi T, Lu W, Bai H, Wu Q, Wang M, Liu K, Xu L, Gao F, Wu J. · 2026-05-16
open access unreviewed -
4
Phosphatidylcholine biosynthesis via ChoC is crucial for cellular integrity and virulence in <i>Rhizopus microsporus</i>.
Carrillo-Marín P, Tahiri G, Camuña-Pardo L, Lax C, Sanchis M, Capilla J, Navarro E, Garre V, Nicolás FE. · 2026-04-16
open access unreviewed -
5
Hybrid AI/ML-mechanistic framework enables intelligent optimization of commercial biopharmaceutical downstream processing.
Wang RZ, Liao YX, Wang TL, Jing XY, Yang G, Wang H, Xiao F, Zong Y, Yang Y, Yuan Y, Xian X, Yao SJ, Jin L, Li… · 2026-03-25
open access unreviewed -
6
Computational studies deciphered the role of key genes and associated networks regulating the defense mechanism in chickpea under <i>Fusarium oxysporum</i> f. sp. <i><b>ciceris</b></i> induced wilt condition.
Chaudhary A, Arunachalam A, Lakshmi PTV. · 2026-02-18
open access unreviewed -
7
Integrative metabolomic and transcriptomic analysis reveals stage-specific shifts in hepatic lipid metabolism of broiler chickens.
Li J, Xu Y, Ren P, Xiong X, Qiu M, Yu C, Liu Y, Yang C. · 2026-02-03
open access unreviewed -
8
Targeting mitochondrial quality control in diabetic kidney disease: emerging therapeutic opportunities.
Luo J, Lu F, Cuciureanu M, Xu X, Dong H, Gong M. · 2026-02-03
cited 2× open access unreviewed -
9
<b>Self-aggregating</b> <i><b>Lactiplantibacillus plantarum</b></i> <b>enhances type-I interferon responses via the cytosolic sensors NOD2 and cGAS</b>.
Solis S, Maldonado EM, Mukhopadhyay S, Jan G, Landete JM, Maluquer de Motes C, Gutierrez-Merino J. · 2026-01-28
open access unreviewed -
10
Replenishing interfacial lubrication: A cartilage-inspired polyzwitterionic dressing for spatiotemporal healing of friction-prone diabetic wound.
Yu P, Li Y, Liu Y, Ma Z, Jiang Y, Lu B, Sun Q, Wang D. · 2026-04-20
unreviewed
External claims. These come from an index outside this database and are not checked against it. Treat them as leads.