4.7 Article

Design, synthesis and biological evaluation of a novel spiro oxazolidinedione as potent p300/CBP HAT inhibitor for the treatment of ovarian cancer

Journal

BIOORGANIC & MEDICINAL CHEMISTRY
Volume 52, Issue -, Pages -

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.bmc.2021.116512

Keywords

Epigenetics; Histone acetyltransferase; P300/CBP; Ovarian cancer

Funding

  1. National Natural Science Foundation of China [81773568, 81973166, 91753207]
  2. Youth innovation promotion association [2017333]
  3. Ministry of Science and Technology of China (National Key R&D Program of China) [2017YFB0202600]
  4. Personalized Medicines Molecular Signature-based Drug Discovery and Development (Strategic Priority Research Program of the Chinese Academy of Sciences) [XDA12020368]

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This study modified the p300/CBP HAT domain inhibitor and obtained a highly active small molecule that showed significant anti-proliferation activity on ovarian cancer cells. The discovery provides a novel idea for the application of epigenetic inhibitors in the treatment of ovarian cancer.
Histone acetylation is one of the most essential parts of epigenetic modification, mediating a variety of complex biological functions. In these procedure, p300/CBP could catalyze the acetylation of lysine 27 on histone 3 (H3K27ac), and had been reported to mediate tumorigenesis and development in a variety of tumors by enhancing chromatin transcription activity. Ovarian cancer, as an extremely malignant tumor, has also been observed to undergo abnormal acetylation of histones. However, whether the treatment of ovarian cancer could be achieved by inhibiting the acetylation activity of p300/CBP on H3K27 has not been well investigated. In this article, we modified the structure of p300/CBP HAT domain inhibitor A-485 and obtained a highly active small molecule known as 13f, which has an IC50 value of 0.49 nM for inhibiting the in vitro enzyme activity of p300, as well as the anti-proliferation IC50 value on ovarian cancer cell line OVCAR-3 was 153 nM. In addition, 13f had strong acetylase family selectivity, good metabolic stability and promising in vivo anti-tumor activity in OVCAR-3 xenograft model. The discovery of 13f revealed a more active chemical entity of the HATs domain of p300/CBP and provided a novel idea for the application of epigenetic inhibitors in the treatment of ovarian cancer.

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