首页> 外文期刊>Molecular cancer therapeutics >Tubulin-based antimitotic mechanism of E7974, a novel analogue of the marine sponge natural product hemiasterlin.
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Tubulin-based antimitotic mechanism of E7974, a novel analogue of the marine sponge natural product hemiasterlin.

机译:E7974的基于微管蛋白的抗有丝分裂机理,E7974是海洋海绵天然产物hemiasterlin的新型类似物。

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E7974 is a synthetic analogue of the marine sponge natural product hemiasterlin. Here, we show that E7974, such as parental hemiasterlin, acts via a tubulin-based antimitotic mechanism. E7974 inhibits polymerization of purified tubulin in vitro with IC(50) values similar to those of vinblastine. In cultured human cancer cells, E7974 induces G(2)-M arrest and marked disruption of mitotic spindle formation characteristic of tubulin-targeted anticancer drugs. Extensive hypodiploid cell populations are seen in E7974-treated cells, indicating initiation of apoptosis after prolonged G(2)-M blockage. Consistent with this observation, E7974 induces caspase-3 activation and poly ADP ribose polymerase cleavage, typical biochemical markers of apoptosis. Only a short cellular exposure to E7974 is sufficient to induce maximum mitotic arrest, suggesting that E7974's antitumor effects in vivo may persist even after blood levels of the drug decrease after drug administration. Interactions of E7974 with purified tubulin were investigated using two synthetic tritiated photoaffinity analogues incorporating a benzophenone photoaffinity moiety at two different positions of the E7974 scaffold. Both analogues preferentially photolabeled alpha-tubulin, although minor binding to beta-tubulin was also detected. E7974 thus seems to share a unique, predominantly alpha-tubulin-targeted mechanism with other hemiasterlin-based compounds, suggesting that, unlike many tubulin-targeted natural products and related drugs, the hemiasterlins evolved to mainly target alpha-tubulin, not beta-tubulin subunits.
机译:E7974是海洋海绵天然产物半棕榈素的合成类似物。在这里,我们显示E7974(例如亲本半胱氨酸)通过基于微管蛋白的抗有丝分裂机制起作用。 E7974抑制体外纯化的微管蛋白的聚合,其IC(50)值与长春碱相似。在培养的人类癌细胞中,E7974诱导G(2)-M逮捕并显着破坏了以微管蛋白为靶点的抗癌药物的有丝分裂纺锤体形成特征。在E7974处理的细胞中看到大量的二倍体细胞群体,表明在延长的G(2)-M阻断后细胞凋亡开始。与该观察结果一致,E7974诱导caspase-3活化和多聚ADP核糖聚合酶裂解,这是凋亡的典型生化标志。仅短时间的细胞暴露于E7974就足以诱导最大的有丝分裂阻滞,这表明即使在给药后药物的血液水平降低后,E7974的体内抗肿瘤作用仍可能持续。使用在E7974支架的两个不同位置结合了二苯甲酮光亲和性部分的两个合成tri化光亲和性类似物,研究了E7974与纯化的微管蛋白的相互作用。两种类似物都优先使用光标记的α-微管蛋白,尽管也检测到与β-微管蛋白的轻微结合。因此,E7974似乎与其他以半精蛋白为基础的化合物具有独特的,主要以α-微管蛋白为靶标的机制,这表明,与许多以微管蛋白为靶标的天然产物和相关药物不同,半胱氨酸进化为主要针对α-微管蛋白,而非β-微管蛋白。亚单位。

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