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C(13)-去甲烯基-(-)-扎那米韦类似物的合成及构效关系研究。

Synthesis and Structure-Activity Relationship Studies of C(13)-Desmethylene-(-)-Zampanolide Analogs.

机构信息

Department of Chemistry and Applied Biosciences, Institute of Pharmaceutical Sciences, ETH Zürich, Vladimir-Prelog-Weg 4, 8093, Zürich, Switzerland.

Current address: Dottikon Exclusive Synthesis AG, 5605, Dottikon, Switzerland.

出版信息

Chemistry. 2023 Jun 27;29(36):e202300703. doi: 10.1002/chem.202300703. Epub 2023 May 22.

DOI:10.1002/chem.202300703
PMID:37057902
Abstract

We describe the synthesis and biochemical and cellular profiling of five partially reduced or demethylated analogs of the marine macrolide (-)-zampanolide (ZMP). These analogs were derived from 13-desmethylene-(-)-zampanolide (DM-ZMP), which is an equally potent cancer cell growth inhibitor as ZMP. Key steps in the synthesis of all compounds were the formation of the dioxabicyclo[15.3.1]heneicosane core by an intramolecular HWE reaction (67-95 % yield) and a stereoselective aza-aldol reaction with an (S)-BINOL-derived sorbamide transfer complex, to establish the C(20) stereocenter (24-71 % yield). As the sole exception, for the 5-desmethyl macrocycle, ring-closure relied on macrolactonization; however, elaboration of the macrocyclization product into the corresponding zampanolide analog was unsuccessful. All modifications led to reduced cellular activity and lowered microtubule-binding affinity compared to DM-ZMP, albeit to a different extent. For compounds incorporating the reactive enone moiety of ZMP, IC values for cancer cell growth inhibition varied between 5 and 133 nM, compared to 1-12 nM for DM-ZMP. Reduction of the enone double bond led to a several hundred-fold loss in growth inhibition. The cellular potency of 2,3-dihydro-13-desmethylene zampanolide, as the most potent analog identified, remained within a ninefold range of that of DM-ZMP.

摘要

我们描述了海洋大环内酯 (-)-zampanolide (ZMP) 的五个部分还原或去甲基类似物的合成及生化和细胞分析。这些类似物是从 13-去甲烯基-(-)-zampanolide (DM-ZMP) 衍生而来的,其作为癌症细胞生长抑制剂的效力与 ZMP 相当。所有化合物合成的关键步骤是通过分子内 HWE 反应(67-95%产率)形成二氧杂双环[15.3.1]二十一烷核,以及与(S)-BINOL 衍生的 sorbamide 转移配合物进行立体选择性氮杂-羟醛缩合反应,以建立 C(20)立体中心(24-71%产率)。作为唯一的例外,对于 5-去甲基大环,环化依赖于大环内酯化;然而,将大环化产物转化为相应的 zampanolide 类似物的工作并未成功。与 DM-ZMP 相比,所有修饰都导致细胞活性降低和微管结合亲和力降低,尽管程度不同。对于包含 ZMP 反应性烯酮部分的化合物,癌症细胞生长抑制的 IC 值在 5 到 133 nM 之间变化,而 DM-ZMP 的 IC 值为 1-12 nM。烯酮双键的还原导致生长抑制作用降低数百倍。作为鉴定出的最有效类似物,2,3-二氢-13-去甲烯基 zampanolide 的细胞效力仍然在 DM-ZMP 的九倍范围内。

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