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新型格尔德霉素胺类似物的合成、结构与抗癌活性,其包含 C(17)-或 C(20)-柔性和刚性臂以及闭合或开环ansa-桥。

Synthesis, structure and anticancer activity of new geldanamycin amine analogs containing C(17)- or C(20)- flexible and rigid arms as well as closed or open ansa-bridges.

机构信息

Faculty of Chemistry, Adam Mickiewicz University, Uniwersytetu Poznanskiego 8, 61-614, Poznan, Poland.

Department of Pharmacology, University of Medical Sciences, Rokietnicka 5a, 60-806, Poznan, Poland.

出版信息

Eur J Med Chem. 2020 Sep 15;202:112624. doi: 10.1016/j.ejmech.2020.112624. Epub 2020 Jul 3.

DOI:10.1016/j.ejmech.2020.112624
PMID:32663707
Abstract

The nucleophilic attack of amines at C(17) or C(17)/C(20) positions of geldanamycin's (GDM) benzoquinone, via initial 1,4-Michael conjugate addition mechanism, yield new analogs with closed or open ansa-bridges (1-31), respectively. X-ray structures of analogs 22 and 24 reveals an unexpected arrangement of the ansa-bridge in solid (conformer B), that is located between those of conformers A, prevailing in solution (trans-lactam), and C, crucial at binding to Hsp90 (cis-lactam). The structure of a new-type conformer B allows to better understand the molecular recognition mechanism between the GDM analogs and the target Hsp90. Combined analysis of: anticancer test results (SKBR-3, SKOV-3, PC-3, U-87, A-549) and those performed in normal cells (HDF), K values and docking modes at Hsp90 as well as clogP parameters, reveals that the rigid C(17)-arm (piperidyl, cyclohexyl) with a H-bond acceptor as carbonyl group together with a lipophilicity clogP∼3 favor high potency of analogs, even up to IC ∼0.08 μM, at improved selectivity (SI > 30), when compared to GDM. The most active 25 show higher anticancer potency than 17-AAG (in SKOV-3 and A-549) as well as reblastatin (in SKBR-3 and SKOV-3). Opening of the ansa-bridge within GDM analogs, at the best case, decreases activity (IC∼2 μM) and toxicity in HDF cells (SI∼2-3), relative to GDM.

摘要

通过初始 1,4-Michael 共轭加成机制,亲核试剂在格尔德霉素 (GDM) 苯醌的 C(17)或 C(17)/C(20)位上的进攻,分别生成具有闭合或开环ansa-桥的新类似物(1-31)。类似物 22 和 24 的 X 射线结构揭示了ansa-桥在固体(构象 B)中的一个意想不到的排列,该排列位于构象 A(在溶液中占优势的反式内酰胺)和构象 C(在与 Hsp90 结合时至关重要的顺式内酰胺)之间。新型构象 B 的结构有助于更好地理解 GDM 类似物与靶标 Hsp90 之间的分子识别机制。综合分析:抗癌测试结果(SKBR-3、SKOV-3、PC-3、U-87、A-549)和正常细胞(HDF)中的测试结果、K 值和在 Hsp90 上的对接模式以及 clogP 参数,表明刚性 C(17)-臂(哌啶基、环己基)与作为羰基的氢键受体以及亲脂性 clogP∼3 有利于类似物的高活性,即使在提高的选择性(SI>30)下,其活性也高达 IC∼0.08 μM,与 GDM 相比。最活跃的 25 种在 SKOV-3 和 A-549 中的抗癌活性高于 17-AAG,在 SKBR-3 和 SKOV-3 中的活性高于 reblastatin。与 GDM 相比,GDM 类似物ansa-桥的打开,在最佳情况下,会降低活性(IC∼2 μM)和在 HDF 细胞中的毒性(SI∼2-3)。

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