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Design, synthesis, and biological evaluation of hydrophobic-tagged poly (ADP-ribose) polymerase 1 (PARP1) degraders.

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Bioorganic chemistry 📖 저널 OA 2.3% 2024: 0/13 OA 2025: 1/75 OA 2026: 4/129 OA 2024~2026 2026 Vol.170() p. 109507
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Li J, Cui Y, Xiong M, Zhang L, Mu S, He Z

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Given its critical role in mediating the DNA damage response and repair, Poly (ADP-ribose) polymerase-1 (PARP1) has been established as a significant therapeutic target for cancer and a multitude of o

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APA Li J, Cui Y, et al. (2026). Design, synthesis, and biological evaluation of hydrophobic-tagged poly (ADP-ribose) polymerase 1 (PARP1) degraders.. Bioorganic chemistry, 170, 109507. https://doi.org/10.1016/j.bioorg.2026.109507
MLA Li J, et al.. "Design, synthesis, and biological evaluation of hydrophobic-tagged poly (ADP-ribose) polymerase 1 (PARP1) degraders.." Bioorganic chemistry, vol. 170, 2026, pp. 109507.
PMID 41564696 ↗

Abstract

Given its critical role in mediating the DNA damage response and repair, Poly (ADP-ribose) polymerase-1 (PARP1) has been established as a significant therapeutic target for cancer and a multitude of other human diseases. In this study, a novel series of hydrophobic tagging (HyT) derivatives were developed through design, synthesis, and evaluation to induce the degradation of PARP1. Leading compound 11e demonstrated significant efficacy in the triple-negative breast cancer cell line MDA-MB-231, potently degrading PARP1 in a concentration- and time-dependent manner, thereby effectively inhibiting cancer cell proliferation and migration. Moreover, a degradation of PARP1 was induced by 11e in various BRCA1/2-proficient carcinoma-derived lines, with potency observed at low compound levels. In conclusion, compound 11e, a novel and highly effective PARP1 degrading agent, displays superior degradation capability and holds considerable promise for future clinical applications.

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