Amino-modified Nucleosides
N1-Methyl-N3-(3-amino-3-carboxypropyl) pseudouridine
Quick view. We supply N1-Methyl-N3-(3-amino-3-carboxypropyl) pseudouridine as a specialty product for nucleic acid chemistry and oligonucleotide research workflows. A public CAS number is not assigned for this exact form. Catalog target purity: Specification on request.
Structure confirmation
This item requires structure confirmation before quotation. Send the target structure, CAS number, SMILES, InChI or drawing for our technical review.
Canonical name plus a structure drawing, SMILES, InChI or unambiguous CAS number.
Protecting groups, stereochemistry, salt or counterion, hydration and requested form.
Agreed identity and purity criteria are documented in the quotation, specification and lot-specific data package.
Product profile
N1-Methyl-N3-(3-amino-3-carboxypropyl) pseudouridine is classified as nucleoside or protected nucleoside intermediate.
N1-Methyl-N3-(3-amino-3-carboxypropyl) pseudouridine can serve as a starting material, protected intermediate or analytical comparator in nucleoside and nucleotide route development.
For N1-Methyl-N3-(3-amino-3-carboxypropyl) pseudouridine, functional handles may require orthogonal protection, pH control and rapid purification to avoid hydrolysis, oxidation or cross-reaction.
Names and search terms
Useful catalog search terms
- Nucleoside or protected nucleoside intermediate
- amine functionality
- Amino-modified Nucleosides
Physicochemical data
| Key chemistry motifs | amine functionality |
|---|
Release documentation
The current specification defines the analytical method and acceptance criteria; the released lot result is reported on the CoA.
Additional HPLC, MS or NMR documentation can be agreed during technical review where available.
Additional application examples
- Typical work includes protection/deprotection studies, phosphorylation or phosphitylation route scouting and impurity identification.
- The material can support medicinal-chemistry analog preparation and process-development feasibility studies.
Product-specific evaluation notes
Potential advantages
- Reactive handles make the product adaptable across dye-labeling, surface-coupling and ligand-conjugation workflows.
- Base modifications can tune RNA stability, translation behavior, duplex properties or analytical discrimination versus native bases.
Method limitations
- Functional handles may require orthogonal protection, pH control and rapid purification to avoid hydrolysis, oxidation or cross-reaction.
- Modification benefits are context-dependent; transcript length, substitution level, enzyme system and analytical purity can change the observed outcome.
These points describe N1-Methyl-N3-(3-amino-3-carboxypropyl) pseudouridine or its named chemical feature. Broader product-family guidance is maintained on the category page.
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Frequently asked questions
Can the package size for N1-Methyl-N3-(3-amino-3-carboxypropyl) pseudouridine be customized?
Yes. Share the initial quantity, expected future scale, delivery timeline and packaging preference for review.
What information should be included in a quote request?
Quote catalog number BX-AMN-0125, the intended research workflow, required quantity and any additional HPLC, MS or NMR documentation needed.
Product-relevant literature
The publications below discuss N1-Methyl-N3-(3-amino-3-carboxypropyl) pseudouridine or the named structural feature represented by this product.
