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UTP-Na3

Uridine 5'-triphosphate trisodium salt(UTP-Na3)

Uridine 5’-triphosphate trisodium salt(UTP-Na3)
Name Uridine 5'-triphosphate trisodium salt
CAS No. 19817-92-6
Molecular formula C9H12O15N2P3Na3
Molecular weight 550.2
Physicochemical properties This product is white or off-white powder; Moisture; Soluble in water, very slightly soluble in ethanol, ether or chloroform
Purity

HPLC ≥ 95% (qualified product)
HPLC ≥ 98% (premium grade)

Storage Shading, sealing, cryopreservation

 

Application Areas

 

 

1. Product Overview

 

UTP-Na (Uridine 5'-Triphosphate Trisodium Salt) is a pyrimidine nucleotide triphosphate derived from uridine. It plays a central role in RNA synthesis, glycogen biosynthesis, and nucleotide metabolism. UTP-Na is widely used in pharmaceutical research, molecular biology, diagnostics, and biotechnology due to its critical role as a substrate for enzymatic reactions, glycosylation processes, and nucleotide-dependent pathways.

 

2. Main Application Fields

1) Pharmaceutical Industry

 

Drug intermediate: UTP-Na is used in the synthesis of uridine-based drugs, nucleotide analogs, and glycosylated therapeutics.

 

Metabolic research: Supports studies of RNA metabolism, glycogen biosynthesis, and pyrimidine nucleotide pathways.

 

Enzyme-targeted research: Applied in studies involving uridine kinase, UDP-glucose formation, and other nucleotide-dependent enzymes.

 

2) Scientific Research

 

RNA synthesis studies: UTP-Na serves as a precursor for RNA transcription, UTP-dependent reactions, and pyrimidine nucleotide metabolism research.

 

Enzymology: Used as a substrate or reference compound in studies of glycosyltransferases, kinases, and nucleotide-metabolizing enzymes.

 

Metabolic pathway studies: Applied in research of UDP-sugar formation, glycogen synthesis, and energy metabolism.

 

3) Diagnostics & Testing Reagents

 

Enzyme activity assays: Incorporated into kits for measuring UTP-dependent enzymatic activity.

 

Metabolic pathway analysis: Used as a standard compound in studies of RNA biosynthesis, glycogen formation, and pyrimidine metabolism.

 

4) Biotechnology & Applied Fields

 

Cell-free nucleotide synthesis: UTP-Na is used in in vitro transcription systems and glycosylation reactions.

 

Synthetic biology: Functions as a nucleotide building block in engineered pathways and metabolic engineering studies.

 

Biochemical research: Supports studies of nucleotide-dependent enzymes, RNA synthesis, and energy metabolism.

 

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