t-Boc-N-amido-PEG2-acetic acid is a PEG-based linker building block featuring a short ethylene glycol spacer (PEG2) terminated with an acetic acid functionality and protected at the amino side as a tert-butoxycarbonyl (t-Boc) amide. Its structural design combines a hydrophilic, flexible polyether segment with a chemically addressable carboxylic acid for coupling and an amide-forming handle for attachment to ligands. In PROTAC architectures, such linkers are used to tune the spatial relationship and conformational freedom between the target-binding moiety and the E3-ligase recruiting element, thereby improving productive ternary complex formation while reducing nonspecific contacts. The t-Boc protection supports controlled stepwise synthesis, enabling selective deprotection and subsequent conjugation under standard peptide/amide coupling conditions. This compound is valuable for researchers developing and optimizing targeted protein degradation constructs that require compact, water-compatible linker segments.
Structure of 108466-89-3
* For research and manufacturing use only. Not for human or clinical use.
| Size | Price | Stock | Quantity |
|---|---|---|---|
| -- | $-- | In stock |
Looking for different specifications? Click to request a custom quote!
Capabilities & Facilities
Popular Publications Citing BOC Sciences Products
t-Boc-N-amido-PEG2-acetic acid, is designed to provide a hydrophilic, flexible polyethylene glycol spacer combined with a protected amide functionality and a terminal carboxylic acid handle. Such linkers are widely used to tune solubility, spatial orientation, and linker length between a ligand and an E3-recruiting or target-binding module, supporting efficient formation of heterobifunctional degraders. The following sections describe its structure and practical reactivity for PROTAC synthesis.
Structure: The molecule contains a polyethylene glycol segment that confers conformational flexibility and enhanced polarity, coupled to an amide linkage and a terminal carboxylic acid. A tert-butoxycarbonyl protecting group masks the amine to improve stability during coupling steps, while carbonyl-containing functional groups enable controlled derivatization.
Reactivity: The terminal carboxylic acid is suitable for activation and subsequent amide-bond formation with amine-bearing partners under standard peptide-coupling conditions. The Boc-protected amide/amine functionality can be deprotected using acid to generate a reactive amine for further coupling or for attachment to ligand scaffolds. Typical strategies employ carbodiimide or related coupling reagents in compatible polar solvents, with careful pH control to preserve the protecting group until the desired step.
* 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
Please contact us with any specific requirements and we will get back to you as soon as possible.