CAS 7084-29-9
:Uridine,3'-deoxy-5-methyl- (7CI,9CI)
Description:
Uridine, 3'-deoxy-5-methyl- (7CI,9CI), with the CAS number 7084-29-9, is a nucleoside analog that features a modified ribose sugar. Its structure includes a deoxyribose moiety at the 3' position, which distinguishes it from standard uridine, and a methyl group at the 5' position. This compound is typically characterized by its role in biochemical research, particularly in studies involving nucleic acid metabolism and cellular processes. It may exhibit properties such as solubility in polar solvents and potential interactions with nucleic acid structures. The presence of the methyl group can influence its biological activity and stability, making it a subject of interest in medicinal chemistry and pharmacology. Additionally, its analog nature allows it to serve as a tool for investigating the mechanisms of nucleoside transport and metabolism in various biological systems. Overall, Uridine, 3'-deoxy-5-methyl- is a significant compound in the field of biochemistry, with potential applications in therapeutic development and molecular biology research.
Formula:C10H14N2O5
Synonyms:- Thymine,1-(3-deoxy-b-D-erythro-pentofuranosyl)- (8CI)
- 3'-Deoxy-5-Methyluridine
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Found 4 products.
3’-Deoxy-5-methyluridine
CAS:Formula:C10H14N2O5Purity:98%Color and Shape:SolidMolecular weight:242.22863'-Deoxy-5-methyluridine
CAS:Nucleoside Derivatives - 3’-Deoxy nucleosides, 5-Modified pyrimidine nucleosides; Drugs and Inhibitors; RNA chain terminatorFormula:C10H14N2O5Color and Shape:SolidMolecular weight:242.233'-Deoxy-5-methyluridine
CAS:<p>3'-Deoxy-5-methyluridine (3'-DMAU) is a synthetic nucleoside that is used in the treatment of viral infections. 3'-DMAU has antiviral and anticancer activity, and it has been used to synthesize DNA for genetic engineering. It has shown promising results in the treatment of HIV as well as in the prevention of cancer metastasis. 3'-DMAU inhibits DNA synthesis by binding to the enzyme RNA polymerase, which blocks its interaction with ribonucleosides, thus inhibiting RNA synthesis. In addition, 3'-DMAU causes cell death by inhibiting protein synthesis. The drug is activated by phosphorylation to form 5'-triphosphate and 5'-diphosphate derivatives, which inhibit DNA and RNA synthesis at multiple sites within the cell.</p>Formula:C10H14N2O5Purity:Min. 95%Color and Shape:PowderMolecular weight:242.23 g/mol



