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A modular PROTAC design for target destruction using a degradation signal based on a single amino acid.


ABSTRACT: Proteolysis targeting chimeras (PROTACs) are bivalent molecules that bring a cellular protein to a ubiquitin ligase E3 for ubiquitination and subsequent degradation. Although PROTAC has emerged as a promising therapeutic means for cancers as it rewires the ubiquitin pathway to destroy key cancer regulators, the degradation signals/pathways for PROTACs remain underdeveloped. Here we append single amino acids, the simplest degradation signal, to a ligand specific for estrogen-related receptor ? (ERR?) and demonstrate their utility in ERR? knockdown via the N-end rule pathway and also their efficiency in the growth inhibition of breast cancer cells. The modular design described offers unique advantages including smaller molecular size with shortest degradation sequences and degradation speed modulation with different amino acids. Our study expands the repertoire of limited ubiquitin pathways currently available for PROTACs and could be easily adapted for broad use in targeted protein degradation.

SUBMITTER: Shanmugasundaram K 

PROVIDER: S-EPMC6791330 | biostudies-literature | 2019 Oct

REPOSITORIES: biostudies-literature

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A modular PROTAC design for target destruction using a degradation signal based on a single amino acid.

Shanmugasundaram Karthigayan K   Shao Peng P   Chen Han H   Campos Bismarck B   McHardy Stanton F SF   Luo Tuoping T   Rao Hai H  

The Journal of biological chemistry 20190911 41


Proteolysis targeting chimeras (PROTACs) are bivalent molecules that bring a cellular protein to a ubiquitin ligase E3 for ubiquitination and subsequent degradation. Although PROTAC has emerged as a promising therapeutic means for cancers as it rewires the ubiquitin pathway to destroy key cancer regulators, the degradation signals/pathways for PROTACs remain underdeveloped. Here we append single amino acids, the simplest degradation signal, to a ligand specific for estrogen-related receptor α (E  ...[more]

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