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Molecular and cellular pharmacology of the novel noncamptothecin topoisomerase I inhibitor Genz-644282.

机译:新型非喜树碱拓扑异构酶I抑制剂Genz-644282的分子和细胞药理作用。

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Camptothecin derivatives are powerful anticancer drugs because of their ability to trap topoisomerase I (Top1)-DNA cleavage complexes. However, they exhibit clinical limitations due to the instability of their alpha-hydroxylactone six-membered E-ring structure. In addition, they exhibit bone marrow and intestinal toxicity, especially in adults, and are drug efflux substrates. Here, we report a novel Top1 inhibitor, Genz-644282. We show that Genz-644282 and its metabolites induce Top1 cleavage at similar, as well as unique genomic positions, compared with camptothecin. The compound also induces protein-linked DNA breaks and Top1-DNA cleavage complexes that persist longer after compound removal than camptothecin. Concentration-dependent and persistent gammaH2AX formation was readily observed in cells treated with Genz-644282, and was present in greater than 50% of the cell population following 24 hours compound exposure. The compound shows partial cross-resistance in cell lines resistant to camptothecin. These cell lines include the human prostate DU145RC0.1 and the leukemic CEM/C2 cells. Limited cross-resistance to Genz-644282 was also found in the Top1 knockdown colon cancer (HCT116) and breast cancer (MCF7) cell lines and in human adenocarcinoma cells (KB31/KBV1) that overexpress (P-glycoprotein, ABCB1), a member of the ATP-binding cassette family of cell surface transport proteins known to confer MDR. Together, our results provide the first molecular and cellular characterization of Genz-644282 and its clinically relevant metabolites.
机译:喜树碱衍生物是强大的抗癌药物,因为它们能够捕获拓扑异构酶I(Top1)-DNA裂解复合物。但是,由于其α-羟基内酯六元E环结构的不稳定性,它们具有临床局限性。此外,它们表现出骨髓和肠道毒性,尤其是在成年人中,并且是药物外排的底物。在这里,我们报告了一种新型的Top1抑制剂Genz-644282。我们显示,与喜树碱相比,Genz-644282及其代谢物在相似的以及独特的基因组位置上诱导Top1裂解。该化合物还诱导蛋白质连接的DNA断裂和Top1-DNA裂解复合物,它们在去除化合物后比喜树碱持续更长的时间。在用Genz-644282处理的细胞中容易观察到浓度依赖性和持续性的gammaH2AX形成,并且在24小时暴露于化合物后,其存在于50%以上的细胞群中。该化合物在对喜树碱具有抗性的细胞系中显示出部分交叉耐药性。这些细胞系包括人前列腺DU145RC0.1和白血病CEM / C2细胞。在Top1基因敲除结肠癌(HCT116)和乳腺癌(MCF7)细胞系以及过度表达(P-糖蛋白,ABCB1)的人腺癌细胞(KB31 / KBV1)中也发现了对Genz-644282的有限交叉耐药性赋予MDR的细胞表面转运蛋白ATP结合盒家族的组成。在一起,我们的结果提供了Genz-644282及其临床相关代谢产物的首次分子和细胞表征。

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