DOI: 10.1021/acs.jmedchem.6c01789 ISSN: 0022-2623

Helical Peptidomimetic Inhibitors Targeting the Histone Chaperone ASF1 for Cancer Therapy

Chao Hao, Xiaosa Wang, Kang Wang, Chenying Hou, Mingshuang Wu, Ying Yang, Jingru Ma, Xuhui Kong, Yan Shi, Peng Wu, Peng Li, Peng Sang

Abstract

Targeting protein−protein interactions (PPIs) with shallow, extended interfaces remains challenging, as exemplified by the histone chaperone ASF1. Here, we report de novo designed d-sulfonyl-γ-AApeptide foldamers that mimic the hot-spot residues of the histone H3 C-terminal α-helix that are essential for ASF1 recognition. The lead compound ASF-015 shows high-affinity binding to ASF1A and potent antiproliferative activity across cancer cell lines. These foldamers, completely resistant to proteolytic degradation, penetrate cells without a cell-penetrating peptide, engage intracellular ASF1, disrupt the ASF1−histone H3−H4 complex, and transcriptionally suppress proliferation and promote apoptosis. In the 4T1 and CT26 murine models, systemically administered ASF-015 inhibits tumor growth without detectable toxicity. This study establishes d-sulfonyl-γ-AApeptides as the first ASF1 inhibitors that simultaneously achieve high affinity, metabolic stability, autonomous permeability, and in vivo anti-tumor efficacy, offering a new strategy for targeting the ASF1−histone interface and other challenging PPIs in epigenetic drug discovery.