1,3,4,6-Tetra-O-acetyl-N-azidoacetylgalactosamine is a protected, azide-functionalized galactosamine derivative in which the hydroxyl groups are masked as acetate esters and the amino functionality is converted to an azidoacetamide. The tetra-O-acetyl pattern increases membrane permeability and stability of the glycosylated handle during synthesis and biological handling, while the terminal azide provides a bioorthogonal chemical “click” site for conjugation. In PROTAC and related targeted protein degradation workflows, such azide-bearing linkers are commonly used to install or exchange attachment points that connect a ligand or recruiting moiety to a second component via copper-free azide–alkyne cycloaddition or related chemistries, enabling modular assembly under mild conditions. This compound is therefore valuable for researchers seeking reliable glycan-mimetic or solubility-tuning linkers that facilitate controlled conjugation and subsequent activation or deprotection steps in targeted degradation experiments.
Structure of 653600-56-7
* For research and manufacturing use only. Not for human or clinical use.
| Size | Price | Stock | Quantity |
|---|---|---|---|
| 50 mg | $499 | In stock | |
| 200 mg | $1799 | In stock |
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This PROTAC linker reagent enables the installation of an azide handle on a carbohydrate-derived scaffold, supporting modular assembly of bifunctional degraders. Its acetyl-protected hydroxyl pattern improves handling and compatibility in organic synthesis, while the azido functionality provides a reliable chemoselective coupling site for PROTAC construction. The following sections describe the structure and the practical reactivity considerations for experimental workflows.
Structure: The molecule is a tetra-O-acetylated galactosamine derivative bearing an N-azidoacetyl amide. It contains ester linkages from acetyl groups, an azide functional group, and an amide carbonyl, with multiple oxygen atoms that confer polarity and hydrogen-bonding potential after deprotection.
Reactivity: The azide group is suited for azide–alkyne cycloaddition or related click-type conjugations used to connect PROTAC fragments. Assembly is typically performed under copper-catalyzed or copper-free conditions with appropriate ligands to maintain functional-group compatibility. The acetyl protecting groups can be removed under standard mild base or transesterification conditions to reveal hydroxyls when subsequent coupling or solubilization is required.
* Our calculator is based on the following equation:
Concentration (start) x Volume (start) = Concentration (final) x Volume (final)
It is commonly abbreviated as: C1V1 = C2V2
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