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Development of Oligo-PROTACs That Target C/EBPα.

Aug 2026 · ACS Chemical Biology · 0 citations · 37 references
Medicine

Abstract

CCAAT/enhancer-binding protein alpha (C/EBPα) is a critical lineage-defining transcription factor and tumor suppressor. Despite its clinical significance in conditions like acute myeloid leukemia and hepatocellular carcinoma (HCC), C/EBPα has remained undruggable due to its intrinsically disordered regions and lack of small-molecule binding pockets. In this study, we describe the development of a novel Oligonucleotide-based PROteolysis-TArgeting Chimera (Oligo-PROTAC or O'PROTAC) strategy designed to achieve targeted degradation of endogenous C/EBPα. We designed and synthesized a 10-nucleotide double-stranded DNA decoy derived from a C/EBPα-binding motif and conjugated it via variable linkers to the E3 ligase ligands pomalidomide or VH032. A total of six candidates were synthesized and evaluated in 3T3-J2 and Huh7 cell lines. We demonstrate that these O'PROTACs successfully localize to the nucleus and achieve dose-dependent degradation of C/EBPα, with the most potent candidates exhibiting sub-micromolar DC50 via lipofection delivery. Notably, this degradation occurred without inducing significant cytotoxicity. We observe a transcriptional shift consistent with loss of C/EBPα, including downregulation of cooperative factors involved in liver lineage specification and their downstream target genes. This work establishes O'PROTACs as a viable modality for targeting C/EBPα, offering a novel strategy for mechanistic investigation and future therapeutic targeting.

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