Glucose-1-phosphate
Reactions involving Glucose-1-phosphate
Every recorded step where this molecule takes part
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Glucose-1-phosphate ↔ glucose-6-phosphate
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Glucose-1-phosphate + UTP → UDP-glucose + PPi
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Glucose-1-phosphate ↔ glucose-6-phosphate
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Glucose-1-phosphate + UTP -> UDP-glucose + PPi
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Galactose-1-phosphate + UDP-glucose → glucose-1-phosphate + UDP-galactose
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Glucose-6-phosphate ↔ glucose-1-phosphate
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Glycogen(n) + Pi → glycogen(n−1) + glucose-1-phosphate
Showing all 7 reactions.
Pathway junctions through this molecule
Produced in one pathway, consumed in another
| Produced in | Consumed in | Link | |
|---|---|---|---|
| Galactose Metabolism | → | Glycogenesis (Glycogen Synthesis) | within category |
| Galactose Metabolism | → | Glycogenolysis (Glycogen Breakdown) | within category |
| Galactose Metabolism | → | Uronic Acid Pathway | within category |
| Glycogenesis (Glycogen Synthesis) | → | Galactose Metabolism | within category |
| Glycogenesis (Glycogen Synthesis) | → | Glycogenolysis (Glycogen Breakdown) | within category |
| Glycogenesis (Glycogen Synthesis) | → | Uronic Acid Pathway | within category |
| Glycogenolysis (Glycogen Breakdown) | → | Galactose Metabolism | within category |
| Glycogenolysis (Glycogen Breakdown) | → | Glycogenesis (Glycogen Synthesis) | within category |
| Glycogenolysis (Glycogen Breakdown) | → | Uronic Acid Pathway | within category |
Recent literature
Europe PMC · fetched just now · sorted by publication date
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1
Contrasting dietary patterns remodel gut microbial function and generate multi-omic signatures associated with cardiometabolic markers.
Stanford J, Hoedt EC, Gómez-Martín M, Clarke ED, Duncanson K, Burrows T, Collins CE. · 2026-06-11
open access unreviewed -
2
Explainable machine learning integrating bioelectrical impedance for 6-month cardiovascular risk in peritoneal dialysis.
Tsai YL, Wu CL, Chiang JH. · 2026-04-22
open access unreviewed -
3
Efficient whole-cell biotransformation for gastrodin production via glycosyltransferase engineering and process optimization.
Wang X, Zhang J, Li T, Wang F, Wang Z, Li X. · 2026-04-06
open access unreviewed -
4
Stepwise phage resistance and collateral phage susceptibility in <i>Klebsiella pneumoniae</i>.
Yin X, Feng Y, Luo H, Fang Q, Yu J, McNally A, Zong Z. · 2026-05-29
cited 1× open access unreviewed -
5
Melatonin-enabled omics: understanding plant responses to single and combined abiotic stresses for climate-smart agriculture.
Raza A, Li Y, Charagh S, Guo C, Zhao M, Hu Z. · 2026-01-27
cited 5× open access unreviewed -
6
Simultaneous UHPLC-MS/MS profiling of eight phosphate metabolites reveals divergent metabolic reprogramming under hypoxic stress.
Tan H, Zhang Y, Fan J, Bai L, Xu P, Li X, Zhou X, Xue M. · 2026-05-30
unreviewed -
7
Enzyme promiscuity-driven co-production of flavonoid 7-<i>O</i>-glycosides in engineered <i>Saccharomyces cerevisiae</i>.
Tan X, Zuo S, Hu F, Xiao Z, Wang Y, Zhang S, Lu Q, Zhao Y, Chen J, Fan L, Liu J, Shan Y. · 2026-02-12
cited 1× open access unreviewed -
8
<i>De novo</i> biosynthesis of eriocitrin in <i>Saccharomyces cerevisiae</i> through deep learning-guided enzyme screening and systematic metabolic engineering.
Lu Q, Tan X, Zhang S, Wang Y, Zhao Y, Liu J, Hu F, Zuo S, Chen J, Fan L, Ding S, Xiao Z, Shan Y. · 2026-02-04
cited 1× open access unreviewed -
9
Parathyroid hormone heterogeneity and assay-dependent interpretation in practice.
Kozłowska E, Chudziński W, Ciepiela O. · 2026-08-01
unreviewed -
10
Reshaping psoriasis topical therapy: Continuous hydrogenation orchestrates 'redox-metabolic homeostasis' for efficient remission and relapse intervention.
Lin L, Guan Q, Ding Z, Zou J, Dong C, Zhu X, Fan W, Li H, Xu J, Tan J, Ding W, Pei J, Du J. · 2026-03-24
open access unreviewed
External claims. These come from an index outside this database and are not checked against it. Treat them as leads.