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基于结构导向设计的微管蛋白秋水仙碱结构域高亲和力配体。

High-affinity ligands of the colchicine domain in tubulin based on a structure-guided design.

机构信息

Instituto de Química Médica (IQM,CSIC), Juan de la Cierva 3, 28006, Madrid, Spain.

Centro de Investigaciones Biológicas (CIB,CSIC), Ramiro de Maeztu 9, 28040, Madrid, Spain.

出版信息

Sci Rep. 2018 Mar 9;8(1):4242. doi: 10.1038/s41598-018-22382-x.

Abstract

Microtubule-targeting agents that bind at the colchicine-site of tubulin are of particular interest in antitumoral therapy due to their dual mechanism of action as antimitotics and vascular disrupting agents. Cyclohexanediones derivatives have been described as a new family of colchicine-domain binders with an association constant to tubulin similar to that of colchicine. Here, the high-resolution structures of tubulin in complex with cyclohexanediones TUB015 and TUB075 were solved by X-ray crystallography. A detailed analysis of the tubulin-TUB075 interaction by means of computational affinity maps allowed the identification of two additional regions at the binding site that were addressed with the design and synthesis of a new series of cyclohexanediones with a distal 2-substituted benzofurane. These new compounds showed potent antiproliferative activity with IC values in the nM range, arrested cell cycle progression at the G/M phase and induced apoptosis at sub μM concentrations. Moreover, they caused the destruction of a preformed vascular network in vitro and inhibited the migration of endothelial cells at non-toxic concentrations. Finally, these compounds displayed high affinity for tubulin as substantiated by a K value of 2.87 × 10 M which, to the best of our knowledge, represents the highest binding constant measured to date for a colchicine-domain ligand.

摘要

微管靶向剂与微管蛋白的秋水仙碱结合部位结合,由于其作为抗有丝分裂剂和血管破坏剂的双重作用机制,在抗肿瘤治疗中特别受到关注。环己二酮衍生物已被描述为秋水仙碱结构域结合物的一个新家族,与微管蛋白的结合常数与秋水仙碱相似。在这里,通过 X 射线晶体学解决了微管蛋白与环己二酮 TUB015 和 TUB075 复合物的高分辨率结构。通过计算亲和力图谱对微管蛋白-TUB075 相互作用进行详细分析,确定了结合部位的另外两个区域,并设计和合成了一系列带有远端 2-取代苯并呋喃的新型环己二酮。这些新化合物表现出很强的抗增殖活性,IC 值在纳摩尔范围内,在 G/M 期使细胞周期停滞,并在亚微摩尔浓度下诱导细胞凋亡。此外,它们在体外破坏预先形成的血管网络,并在非毒性浓度下抑制内皮细胞的迁移。最后,这些化合物表现出与微管蛋白的高亲和力,其 K 值为 2.87×10M,据我们所知,这代表了迄今为止测量到的秋水仙碱结构域配体的最高结合常数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/37dd/5844890/bb7d59bcf91c/41598_2018_22382_Fig1_HTML.jpg

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