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首页> 外文期刊>Investigational new drugs. >Development of hemiasterlin derivatives as potential anticancer agents that inhibit tubulin polymerization and synergize with a stilbene tubulin inhibitor.
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Development of hemiasterlin derivatives as potential anticancer agents that inhibit tubulin polymerization and synergize with a stilbene tubulin inhibitor.

机译:开发半乳糖素衍生物作为潜在的抗癌剂,可抑制微管蛋白聚合并与二苯乙烯微管蛋白抑制剂协同作用。

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摘要

Hemiasterlins are cytotoxic tripeptides with antimicrotubule activity originally isolated from marine sponges. We have developed new hemiasterlin derivatives BF65 and BF78 that are highly potent to induce cancer cell death in the low nanomolar range. Examination of their mechanisms of cell cycle arrest and disruption of microtubules revealed an unusual characteristic in addition to anti-tubulin effect. Immunofluorescence staining revealed that A549 lung carcinoma cells treated with BF65 or BF78 exhibited both monopolar and multipolar mitotic spindles. Centrosomes were separated with short spindle microtubules in cells with multipolar spindles. In vitro tubulin polymerization assay confirmed that both BF65 and BF78 were highly potent to inhibit tubulin polymerization. These two compounds induced the formation of monoastral spindles suggesting that they might be inhibitors of mitotic kinesins such as KSP/Eg5. However, kinetic measurement of microtubule activated kinesin ATPase activity demonstrated that unlike the positive control monastrol, neither BF65 nor BF78 suppressed KSP/Eg5 activity. Hence the effect may be a variant form of tubulin inhibition. Similar to vinca alkaloids, BF compounds synergized with a colchicine site microtubule inhibitor stilbene 5c both in vitro and in vivo, which may provide a potential drug combination in the future clinical application.
机译:Hemiasterlins是具有抗微管活性的细胞毒性三肽,最初是从海洋海绵中分离出来的。我们已经开发出了新的半胱氨酸衍生物BF65和BF78,它们在低纳摩尔范围内能有效诱导癌细胞死亡。对它们的细胞周期停滞和微管破坏机制的研究表明,除抗微管蛋白作用外,还有一个不寻常的特征。免疫荧光染色显示,经BF65或BF78处理的A549肺癌细胞同时表现出单极和多极有丝分裂纺锤体。在具有多极纺锤体的细胞中,用短纺锤体微管分离中心体。体外微管蛋白聚合测定法证实BF65和BF78均能有效抑制微管蛋白聚合。这两种化合物诱导了单星形纺锤体的形成,表明它们可能是有丝分裂驱动蛋白如KSP / Eg5的抑制剂。但是,动力学测量的微管激活的驱动蛋白ATPase活性表明,与阳性对照monastrol不同,BF65和BF78均不能抑制KSP / Eg5活性。因此,该作用可能是微管蛋白抑制的变体形式。与长春花生物碱类似,BF化合物在体外和体内均与秋水仙碱位微管抑制剂stilbene 5c协同作用,可能在未来的临床应用中提供潜在的药物组合。

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