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一个整合的果蝇模型系统揭示了 F14512 的独特性质,F14512 是一种新型的含多胺抗癌药物,靶向拓扑异构酶 II。

An integrated Drosophila model system reveals unique properties for F14512, a novel polyamine-containing anticancer drug that targets topoisomerase II.

机构信息

Université de Toulouse, UPS, Université Paul Sabatier, Laboratoire de Biologie Moléculaire Eucaryote, Toulouse, France.

出版信息

PLoS One. 2011;6(8):e23597. doi: 10.1371/journal.pone.0023597. Epub 2011 Aug 10.

Abstract

F14512 is a novel anti-tumor molecule based on an epipodophyllotoxin core coupled to a cancer-cell vectoring spermine moiety. This polyamine linkage is assumed to ensure the preferential uptake of F14512 by cancer cells, strong interaction with DNA and potent inhibition of topoisomerase II (Topo II). The antitumor activity of F14512 in human tumor models is significantly higher than that of other epipodophyllotoxins in spite of a lower induction of DNA breakage. Hence, the demonstrated superiority of F14512 over other Topo II poisons might not result solely from its preferential uptake by cancer cells, but could also be due to unique effects on Topo II interactions with DNA. To further dissect the mechanism of action of F14512, we used Drosophila melanogaster mutants whose genetic background leads to an easily scored phenotype that is sensitive to changes in Topo II activity and/or localization. F14512 has antiproliferative properties in Drosophila cells and stabilizes ternary Topo II/DNA cleavable complexes at unique sites located in moderately repeated sequences, suggesting that the drug specifically targets a select and limited subset of genomic sequences. Feeding F14512 to developing mutant Drosophila larvae led to the recovery of flies expressing a striking phenotype, "Eye wide shut," where one eye is replaced by a first thoracic segment. Other recovered F14512-induced gain- and loss-of-function phenotypes similarly correspond to precise genetic dysfunctions. These complex in vivo results obtained in a whole developing organism can be reconciled with known genetic anomalies and constitute a remarkable instance of specific alterations of gene expression by ingestion of a drug. "Drosophila-based anticancer pharmacology" hence reveals unique properties for F14512, demonstrating the usefulness of an assay system that provides a low-cost, rapid and effective complement to mammalian models and permits the elucidation of fundamental mechanisms of action of candidate drugs of therapeutic interest in humans.

摘要

F14512 是一种新型抗肿瘤分子,基于表鬼臼毒素核心与癌细胞载体精脒部分偶联。这种多胺键假定能确保 F14512 优先被癌细胞摄取,与 DNA 强相互作用,并有效抑制拓扑异构酶 II(Topo II)。尽管 F14512 诱导的 DNA 断裂较少,但它在人类肿瘤模型中的抗肿瘤活性明显高于其他表鬼臼毒素。因此,F14512 相对于其他 Topo II 毒物的优越性可能不仅源于其被癌细胞优先摄取,还可能源于其对 Topo II 与 DNA 相互作用的独特影响。为了进一步剖析 F14512 的作用机制,我们使用了果蝇 melanogaster 突变体,其遗传背景导致易于评分的表型,对 Topo II 活性和/或定位的变化敏感。F14512 在果蝇细胞中具有抗增殖特性,并在独特的位点稳定三元 Topo II/DNA 可切割复合物,这些位点位于中度重复序列中,这表明该药物专门针对选择和有限的基因组序列。将 F14512 喂食给发育中的突变体果蝇幼虫会导致表达一种惊人表型“Eye wide shut”的果蝇恢复,其中一只眼睛被第一胸段取代。其他恢复的 F14512 诱导的功能获得和丧失表型也与精确的遗传功能障碍相对应。在整个发育生物体中获得的这些复杂的体内结果可以与已知的遗传异常相协调,并构成了通过摄入药物特异性改变基因表达的显著实例。“基于果蝇的抗癌药理学”因此揭示了 F14512 的独特特性,证明了该测定系统的有用性,该系统为哺乳动物模型提供了低成本、快速和有效的补充,并允许阐明治疗相关候选药物的基本作用机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6fe1/3154508/0a77311f96f9/pone.0023597.g002.jpg

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