Drug Discovery Research , Astellas Pharma Inc. , Tsukuba , Ibaraki 305-8585 , Japan.
Incyte Research Institute , Wilmington , Delaware 19803 , United States.
J Nat Prod. 2018 Mar 23;81(3):607-615. doi: 10.1021/acs.jnatprod.8b00111. Epub 2018 Mar 9.
(+)-Discodermolide is a microtubule-stabilizing agent with potential for the treatment of taxol-refractory malignancies. (+)-Discodermolide congeners containing the C-3'-phenyl side chain of taxol (paclitaxel) were synthesized based on computational docking models predicting this moiety would fill an aromatic pocket of β-tubulin insufficiently occupied by (+)-discodermolide, thereby conferring improved ligand-target interaction. It was recently demonstrated, however, that the C-3'-phenyl side chain occupied a different space, instead extending toward the M-loop of β-tubulin, where it induced a helical conformation, hypothesized to improve lateral contacts between adjacent microtubule protofilaments. This insight led us to evaluate the biological activity of hybrid congeners using a panel of genetically diverse cancer cell lines. Hybrid molecules retained the same tubulin-polymerizing profile as (+)-discodermolide. Since (+)-discodermolide is a potent inducer of accelerated senescence, a fate that contributes to drug resistance, congeners were also screened for senescence induction. Flow cytometric and transcriptional analysis revealed that the hybrids largely retained the senescence-inducing properties of (+)-discodermolide. In taxol-sensitive cell models, the congeners had improved dose-response parameters relative to (+)-discodermolide and, in some cases, were superior to taxol. However, in cells susceptible to senescence, E increased without concomitant improvements in EC such that overall dose-response profiles resembled that of (+)-discodermolide.
(+)-Discodermolide 是一种微管稳定剂,具有治疗紫杉醇耐药性恶性肿瘤的潜力。基于预测该部分将填补 β-微管蛋白中 (+)-discodermolide 未充分占据的芳基口袋的计算对接模型,合成了含有紫杉醇(紫杉醇)C-3'-苯基侧链的 (+)-Discodermolide 同系物。然而,最近的研究表明,C-3'-苯基侧链占据了不同的空间,而是向 β-微管蛋白的 M-环延伸,在那里它诱导螺旋构象,假设可以改善相邻微管原纤维之间的侧向接触。这一见解促使我们使用一组遗传多样化的癌细胞系评估杂种同系物的生物学活性。杂种分子保留了与 (+)-discodermolide 相同的微管聚合特征。由于 (+)-discodermolide 是加速衰老的有效诱导剂,而衰老会导致耐药性,因此同系物也被筛选用于诱导衰老。流式细胞术和转录分析表明,杂种在很大程度上保留了 (+)-discodermolide 的诱导衰老特性。在紫杉醇敏感的细胞模型中,与 (+)-discodermolide 相比,同系物具有改善的剂量反应参数,在某些情况下甚至优于紫杉醇。然而,在易发生衰老的细胞中,E 值增加而 EC 值没有相应改善,因此整体剂量反应曲线类似于 (+)-discodermolide。