发现新型、强效、可口服的苯并氮杂卓酮衍生物,这些衍生物可激发 MKLP2 抑制表型

Jian Huang , Ting Zhang , Julia Kalashova , Jinhua Li , Chenglu Yang , Linsheng Zhong , Xiaohu Zhou , Qiong Shi , Gang Lv , Jiadai Chenyu , Yidan Xia Abuliezi , Duo Yu , Xuejiao Jiang , Mallu Chenna Reddy , Namrta Choudhry , Naganna Nimishetti , Dun Yang
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引用次数: 0

摘要

有丝分裂驱动蛋白样蛋白 2(MKLP2/KIF20A)是一种关键的有丝分裂调节因子,在人类恶性肿瘤中经常过度表达,其丰度与疾病的不良预后呈正相关。尽管对 MKLP2 作为肿瘤学潜在靶点进行了广泛的研究,但针对 MKLP2 的小分子抑制剂的开发仍然有限。我们之前发现了一种苯并氮杂环酮化合物 HJ81,它能有效破坏有丝分裂后期极光激酶 B (AURKB) 的定位。这项研究揭示了这种破坏是由于无丝分裂开始时 AURKB 迁移失败造成的,而这种现象可具体归因于 MKLP2 的失效,MKLP2 是迁移过程中公认的促进剂。对 HJ81 的进一步优化使 12a 等化合物有望成为 MKLP2 介导的过程的先导抑制剂,并具有更好的药代动力学特性。12a 可抑制体外重组 MKLP2 的微管刺激 ATPase 活性。以耐受性良好的剂量服用 12a 后,携带 Calu-6 肺癌细胞系的小鼠的肿瘤生长明显受到抑制。总之,我们的研究结果表明,苯并哌啶酮衍生物代表了一种新型化学支架,有可能被开发成模拟 MKLP2 抑制作用的癌症治疗药物。
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Discovery of novel, potent and orally available benzoazipinone derivatives that elicit MKLP2-inhibitory phenotypes

Mitotic kinesin-like protein 2 (MKLP2/KIF20A) is a key mitotic regulator frequently overexpressed in human malignancies and its abundance is positively correlated with poor outcomes of the disease. Despite extensive research on MKLP2 as a potential target for oncology, the development of small-molecule inhibitors specific to MKLP2 remains limited. We have previously identified a benzoazipinone compound, HJ81 as a potent disruptor of Aurora kinase B (AURKB) localization during late mitosis. This study reveals that such disruption results from a failure of AURKB relocation at the onset of anaphase and this phenomenon can be specifically attributed to the disablement of MKLP2, a recognized facilitator of the relocation process. Further optimization of HJ81 leads to identifying compounds such as 12a as promising lead inhibitors of MKLP2-mediated processes, with improved pharmacokinetic properties. 12a inhibits the microtubule-stimulated ATPase activity of the recombinant MKLP2 in vitro. Significant suppression of tumor growth was observed in mice bearing the Calu-6 lung cancer cell line when treated with 12a at a well-tolerated dose. Overall, our findings suggest that benzoazipinone derivatives represent a novel chemical scaffold with the potential to be developed to mimic MKLP2 inhibition for cancer treatment.

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