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Small-molecule inhibitors of c-Myc transcriptional factor suppress proliferation and induce apoptosis of promyelocytic leukemia cell via cell cycle arrest

机译:c-Myc转录因子的小分子抑制剂通过细胞周期阻滞抑制增殖并诱导早幼粒细胞白血病细胞凋亡

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c-Myc plays a decisive role in the proliferation of HL-60 promyelocytic leukemia cells. In the present study, we demonstrated that an inhibitor of c-Myc/Max/DNA complex formation has a high potentiality as a suppressor of c-Myc-involved cell signaling. We prepared recombinant c-Myc and Max proteins encompassing the human-origin DNA binding and dimerization domains, and tested a chemical library of 6480 small molecules for their inhibitory effect on the in vitro formation of the c-Myc/Max/DNA complex as well as their influence on DMSO-differentiated HL-60 cells. We found several hit compounds through in vitro and cell-based screening tests, and also confirmed these compounds significantly inhibited the formation of the recombinant c-Myc/Max/DNA complex in the low micromolar range. Indeed, these inhibitors effectively blocked c-Myc-associated gene expression in cancer cell line, suppressed the proliferation and induced the apoptosis of HL-60 promyelocytic leukemia cells via cell cycle arrest without altering the expression level of c-Myc in the DMSO-differentiated HL-60 cells. These successive results suggest that our c-Myc/Max/DNA complex inhibitors potently contribute to the suppression of the Myc-dependent proliferation of leukemia cells and to the induction of apoptosis. Accordingly, we would expect that these compounds could serve as lead compounds in the development of novel anticancer drugs.
机译:c-Myc在HL-60早幼粒细胞白血病细胞的增殖中起决定性作用。在本研究中,我们证明了c-Myc / Max / DNA复合物形成的抑制剂具有抑制c-Myc参与的细胞信号转导的潜力。我们制备了包含人源DNA结合和二聚结构域的重组c-Myc和Max蛋白,并测试了6480个小分子的化学文库对它们在体外形成c-Myc / Max / DNA复合物的抑制作用因为它们对DMSO分化的HL-60细胞有影响。我们通过体外和基于细胞的筛选测试发现了几种命中化合物,并且还证实了这些化合物在低微摩尔范围内显着抑制了重组c-Myc / Max / DNA复合物的形成。实际上,这些抑制剂通过细胞周期停滞有效地阻断了癌细胞系中c-Myc相关基因的表达,抑制了HL-60早幼粒细胞白血病细胞的增殖并诱导了其凋亡,而不会改变DMSO分化的c-Myc的表达水平。 HL-60细胞。这些连续的结果表明,我们的c-Myc / Max / DNA复合物抑制剂有效地抑制了白血病细胞的Myc依赖性增殖并诱导了凋亡。因此,我们希望这些化合物可以作为新型抗癌药物开发中的先导化合物。

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  • 来源
    《Molecular BioSystems》 |2010年第8期|P.1503-1509|共7页
  • 作者单位

    Cancer Cell and Molecular Biology Branch, Division of Cancer Biology, Research Institute, National Cancer Center,809 Madu-1-dong, Ilsandong-gu, Goyang, Gyeonggi-do 410-769,Republic of Korea;

    rnCancer Cell and Molecular Biology Branch, Division of Cancer Biology, Research Institute, National Cancer Center,809 Madu-1-dong, Ilsandong-gu, Goyang, Gyeonggi-do 410-769,Republic of Korea;

    rnDepartment of Chemistry, Seoul National University, Seoul,Republic of Korea;

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