m-PEG1-NHS ester is a short, monoethylene glycol (PEG) linker bearing an N-hydroxysuccinimide (NHS) ester, providing a reactive acylating handle for amine coupling. Structurally, it combines a flexible PEG spacer with an NHS-activated carboxylate, enabling efficient formation of stable amide bonds with primary amines on lysine residues or engineered amino groups of targeting ligands and other PROTAC components. In PROTAC design, this linker is commonly used to introduce a PEG spacer that can improve solubility and reduce steric constraints at the conjugation site, while the NHS ester facilitates straightforward, aqueous-compatible coupling under standard carbodiimide-free amine-activation conditions. Its utility for targeted protein degradation research lies in enabling modular synthesis of conjugates, allowing researchers to tune linker length and attachment geometry to optimize ternary complex formation and degradation potency.
Structure of 1027371-75-0
* For research and manufacturing use only. Not for human or clinical use.
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m-PEG1-NHS ester is a polyethylene glycol-based linker designed for efficient conjugation in targeted protein degradation (PROTAC) workflows. Its NHS-activated ester enables rapid formation of stable amide bonds with primary amines, facilitating modular assembly of bifunctional degraders. The PEG spacer improves solubility and can help mitigate steric constraints between the ligand and the recruited E3 ligase. Detailed structural and reactivity considerations are provided below.
Structure: The linker comprises a short PEG chain bearing an N-hydroxysuccinimide ester, providing an activated carboxylate equivalent. It contains ether linkages within the PEG segment and an ester functional group poised for nucleophilic acyl substitution. The product is typically handled as a reactive, moisture-sensitive solid.
Reactivity: NHS esters react with primary amines to form amide bonds via nucleophilic acyl substitution, proceeding through an acyl-activated intermediate. Suitable conditions generally use mildly basic aqueous or mixed aqueous/organic buffers to maintain amine nucleophilicity while minimizing hydrolysis. Common solvents include DMF or DMSO with controlled water content. No metal catalysts are required; careful exclusion of moisture and timely quenching are important to limit side reactions from ester hydrolysis.
* 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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