diseases such as prostate and breast cancer. Majority of currently known inhibitors suffer from the low permeability and low selectivity between the enzyme isoforms. In this study, toxoflavin motif was used to design and synthesize new KDM4C inhibitors with improved biological activity and in vitro ADME properties. Inhibitors displayed good passive cellular permeability and metabolic stability. However
K
DM4家族的人组蛋白脱甲基酶已经与诸如前列腺癌和乳腺癌的疾病有关。当前已知的大多数
抑制剂都遭受酶同工型之间的低渗透性和低选择性。在这项研究中,毒素黄素被用于设计和合成具有改善的
生物活性和体外A
DME特性的新型K
DM4C
抑制剂。
抑制剂表现出良好的被动细胞通透性和代谢稳定性。然而,减少氧化还原责任并因此对细胞生存力的非特异性影响仍然是一个挑战。