4-Maleimidobutyric acid is a bifunctional linker bearing a maleimide electrophile and a terminal carboxylic acid, providing a versatile handle for covalent conjugation. The maleimide group reacts selectively with thiols (for example, cysteine residues or reduced thiol-bearing ligands) via a Michael-type addition, enabling stable thioether linkage formation under commonly used aqueous buffer conditions. The carboxylic acid functionality allows further coupling to amine-containing partners through standard carbodiimide-mediated amidation or to other activated carboxyl derivatives, facilitating modular assembly of PROTAC constructs. In targeted protein degradation workflows, such linkers are useful for connecting a thiol-functionalized recognition element (e.g., a ligand or scaffold bearing a cysteine/thiol) to a second component, while preserving the spatial separation required for effective ternary complex formation. This product is valuable for researchers developing degraders, antibody–degrader conjugates, and other proximity-inducing systems that require reliable, chemoselective bioconjugation.
Structure of 57078-98-5
* For research and manufacturing use only. Not for human or clinical use.
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4-Maleimidobutyric acid is a versatile PROTAC linker building block featuring a maleimide electrophile that enables efficient conjugation to thiol-bearing ligands. Its compact, flexible spacer supports controlled spatial presentation of binding motifs, facilitating assembly of targeted protein degraders. The subsequent points describe its structure and practical reactivity considerations for constructing PROTACs in research workflows.
Structure: The molecule contains a maleimide functional group conjugated to a butyric acid chain, providing an electrophilic alkene within an imide ring. It bears a carboxylic acid for handle-based coupling and a flexible alkyl linker segment. The overall polarity supports solubility in common organic/aqueous mixtures.
Reactivity: Maleimide groups undergo selective Michael-type addition with thiols under mildly basic to neutral conditions, forming stable thioether linkages commonly used for assembling PROTAC constructs. For PROTAC synthesis, thiol-functionalized components are typically reacted with the maleimide-bearing linker in buffered solvent systems, while protecting groups may be considered to preserve reactive residues. Carboxylic acid activation can enable amide or ester formation when orthogonal coupling 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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