tert-Butyl 2-(2-Hydroxyethoxy)acetate is a protected glycolic acid derivative featuring a tert-butyl ester and a terminal hydroxyethoxy substituent, providing a flexible hydrophilic handle suitable for linker construction. In PROTAC synthesis and related targeted-degradation chemistry, such motifs are commonly used as building blocks to introduce an ether-linked hydroxyl group that can be further functionalized (e.g., converted to activated esters, halides, or click-compatible groups) and then coupled to warhead or E3-ligase-binding elements. The tert-butyl ester offers orthogonal protection during multi-step assembly, enabling selective deprotection under conditions compatible with sensitive ligands. This compound is therefore valuable for researchers seeking modular, water-compatible linkers that balance solubility with controlled attachment geometry, facilitating systematic structure–activity studies of conjugate architecture in targeted protein degradation workflows.
Structure of 287174-32-7
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tert-Butyl 2-(2-Hydroxyethoxy)acetate, is designed to provide a chemically tractable spacer bearing an alcohol functionality for controlled conjugation steps in targeted protein degradation workflows. Its ester-protected motif supports compatibility with common synthetic sequences, while the hydroxyethoxy segment enables downstream coupling to ligands or handles. The following sections describe its structure and practical reactivity considerations for constructing PROTAC architectures.
Structure: The molecule contains a tert-butyl ester and a hydroxyethoxy substituent connected through an ether linkage to an acetate framework. It features ester and ether functional groups, with an alcohol capable of hydrogen bonding. Overall polarity is moderate, supporting solubility in typical organic synthesis solvents.
Reactivity: The ester protecting group enables stepwise assembly by allowing selective transformations under conditions that preserve the ether and alcohol. Reactivity is commonly leveraged for alcohol-mediated coupling or for conversion of the alcohol into activated intermediates used to form new bonds to PROTAC ligands. Standard ester deprotection or transesterification strategies may be applied when required, using base or acid catalysis in appropriate solvents to control the order of functional group unveiling.
* 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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