NADH
Reactions involving NADH
Every recorded step where this molecule takes part
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Oxaloacetate + NADH + H+ ↔ malate + NAD+
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1,3-Bisphosphoglycerate + NADH + H+ → glyceraldehyde-3-phosphate + Pi + NAD+
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Oxaloacetate + NADH + H+ → malate + NAD+
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Acetoacetate + NADH + H+ ⇌ D-β-hydroxybutyrate + NAD+
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consumed Cytosolic glycerol-3-phosphate dehydrogenase (GPD1) Triacylglycerol Synthesis and Lipolysis ST-0107
Dihydroxyacetone phosphate + NADH + H+ ⇌ glycerol-3-phosphate + NAD+
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Pyruvate + NADH + H+ ⇌ lactate + NAD+
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consumed Complex I (NADH:ubiquinone oxidoreductase) Electron Transport Chain (Complexes I–IV) ST-0277
NADH + H+ + ubiquinone (Q) → NAD+ + ubiquinol (QH2)
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Dihydroxyacetone phosphate + NADH + H+ -> glycerol-3-phosphate + NAD+
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Cytosolic oxaloacetate + NADH + H+ -> malate + NAD+
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Malate + NAD+ ↔ oxaloacetate + NADH + H+
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Glyceraldehyde-3-phosphate + inorganic phosphate + NAD+ → 1,3-bisphosphoglycerate + NADH + H+
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FADH2 + NAD+ → FAD + NADH + H+
Recent literature
Europe PMC · fetched just now · sorted by publication date
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1
Guizhi Wuling Decoction alleviates myocardial fibrosis by restoring mitochondrial homeostasis: Evidence from network pharmacology, molecular docking, and multi-omics integration.
Shi L, Wang J, Yang R, Qian B, Li Y, Du X, Ren Y. · 2026-07-16
unreviewed -
2
Metabolic engineering of <i>Escherichia coli</i> based on adaptive evolution and omics technology for highly efficient l-valine production under oxygen-limited conditions.
Zhang H, Ha Z, Wei A, Zhao C, Meng G, Li X, Wu F, Liu J, Wu H, Ma Q, Xie X. · 2026-06-18
unreviewed -
3
Nanozymes: bridging nanoscale characteristics and catalytic mechanisms for advanced biomedical applications.
Sun Y, Yang Y, Kang X, Wang Y. · 2026-06-22
open access unreviewed -
4
Thermodynamic metabolic modeling of growth and bioproduction potential of the acetogen <i>Acetobacterium woodii</i> with and without redox cofactor swaps.
Bauer J, von Kamp A, Pflügl S, Klamt S. · 2026-06-13
open access unreviewed -
5
The RNA binding protein ZFP36L2 displays tissue-selective mRNA targeting in mice.
Stephenson GS, Fleifel D, Cook JG, Laederach A, Ramos SBV. · 2026-06-21
open access unreviewed -
6
Bacterial microbiome and flavor metabolome shifts in traditional Hinggan league sauerkraut fermentation.
Yang Y, Zhang H, Shuang Q, Xia YN. · 2026-06-02
open access unreviewed -
7
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 -
8
Role of primary protectors of plant cells in salinity tolerance: molecular mechanisms and adaptive strategies.
Das S, Janeeshma E, Mousavi H, Aronsson H, Sarraf M. · 2026-06-12
open access unreviewed -
9
Systems engineering of <i>Escherichia coli</i> for high-level hydroxytyrosol production.
Zuo J, Zhang S, Huang W, Liu J, Gao C, Hu GP, Song W, Li X, Wei W, Wu J, Liu L, Liu K, Xu N. · 2026-06-01
open access unreviewed -
10
The protease code of the bacterial gut microbiota: ecological regulation, barrier disruption, and rewiring host defense and signaling.
Eckhard U, Ramírez-Larrota JS, Estevan-Morió E, Gomis-Rüth FX. · 2026-06-10
open access unreviewed
External claims. These come from an index outside this database and are not checked against it. Treat them as leads.