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UDP-GlcNAc disodium salt is the disodium salt of uridine diphosphate N-acetylglucosamine, an activated nucleotide sugar used as the donor substrate for O-GlcNAc transferase (OGT) in enzymatic glycosylation studies. It is supplied as a white to off-white solid with high purity and is intended for biochemical and enzymology research.
Donor substrate for O-GlcNAc transferase-mediated protein O-GlcNAcylation.
High purity (99.9%) suitable for analytical and enzymatic assays.
Supplied as a stable solid for long-term storage at -20°C.
Soluble in aqueous buffers for in vitro reaction use.
Available in multiple small-scale sizes for research convenience.
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Uridine (CAS 58-96-8) is a nucleoside that serves as a critical biochemical precursor for RNA synthesis through enzymatic polymerization pathways As a pyrimidine nucleoside uridine participates directly in nucleotide metabolism impacting cellular energy processes and nucleotide balance Additionally uridine demonstrates vasodilatory properties exerting effects on vascular tone through mechanisms likely involving purinergic signaling pathways It can also modulate contractility in specific tissue models Due to these characteristics uridine is extensively utilized in biomedical research focusing on RNA metabolism vascular biology and muscle contraction dynamics
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Uridine diphosphate (UDP)-GalNAc acts as a precursor in the biosynthesis of O-linked oligosaccharide. It also acts as a substrate for synthesis of chitin a vital element of cell walls in fungi and of exoskeletons of arthropods and insects.
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UDP-glucosamine disodium is the disodium salt of uridine diphosphate glucosamine (UDP-GlcNAc), a nucleotide sugar substrate used by O-GlcNAc transferase for protein O-GlcNAcylation. It is supplied as a white to off-white solid with high reported purity and strong aqueous solubility, intended for biochemical and enzymatic assays.
High purity (99.4%) suitable for biochemical assays.
White to off-white solid for convenient handling and storage.
Soluble in water (250 mg/mL; ultrasonic may be required) for assay preparation.
Stable when stored sealed and kept away from moisture; solution stability recommended at low temperatures.
Functionally active as a substrate for O-GlcNAc transferase in protein modification studies.
Molecular weight 609.28 g/mol and molecular formula C15H23N3Na2O16P2.
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Uridine triphosphate trisodium dihydrate is the trisodium salt dihydrate form of UTP, supplied as a solid nucleotide reagent for in vitro biochemical and molecular biology applications. It functions as a substrate for enzymatic assays and nucleotide incorporation reactions and is provided with specification and storage guidance for research use.
Purity 97.0%.
Physical form solid dihydrate.
Water solubility 116.67 mg/mL (199.05 mM); may require ultrasonic agitation.
Molecular weight 586.12 g/mol.
Storage sealed at -20°C for solid; in solution store at -80°C up to 6 months.
Intended use in enzymatic assays and nucleotide incorporation reactions in vitro.
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Isotopically labeled uridine 5'-monophosphate (15N2) supplied as a high-purity analytical standard for quantitative mass spectrometry, metabolic tracing, and isotopic dilution assays. Provided as a 1 mg vial of 15N2-labeled compound; molecular weight ≈326.17 g/mol and typical purity ~98%.
Isotopically labeled for tracer and mass spectrometry applications.
High purity suitable for quantitative analytical assays.
Small 1 mg vial size for standards and method development.
Suitable as an internal standard in isotopic dilution workflows.
Useful for metabolic tracing and pathway studies.
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Alpha-D-glucosamine pentaacetate is the fully acetylated derivative of D-glucosamine used as an intermediate and reagent in glycobiology and carbohydrate chemistry. It is supplied as a solid for synthetic and analytical workflows, including derivatization and glycan synthesis.
Fully acetylated amino sugar derivative for carbohydrate synthesis.
High purity suitable for research (≥97.0%).
Useful as a synthetic intermediate and for glycobiology studies.
Solid form for convenient storage and handling.
Molecular formula C16H23NO10; molecular weight 389.35 g·mol⁻¹; CAS 7784-54-5.
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