Department of Chemistry, BioScience Research Collaborative , Rice University , 6100 Main Street , Houston , Texas 77005 , United States.
J Am Chem Soc. 2018 Jul 5;140(26):8303-8320. doi: 10.1021/jacs.8b04634. Epub 2018 Jun 26.
Efficient and selective total syntheses of spliceosome modulating natural products thailanstatins A-C and spliceostatin D are reported. A number of stereoselective methods for the construction of various tetrasubstituted dihydro- and tetrahydropyrans were developed as a prerequisite for the syntheses of these naturally occurring molecules and variations thereof. The pyran-forming reactions utilize a Heck/Saegusa-Ito cascade sequence to generate hydroxy α,β,γ,δ-unsaturated aldehyde precursors followed by a catalyst-controlled oxa-Michael cyclization to furnish tetrasubstituted dihydropyrans with high stereocontrol. Subsequent optimized homogeneous or heterogeneous hydrogenations of these dihydropyran systems afford their tetrahydropyran counterparts, also in a highly stereoselective manner. The synthesized thailanstatins and related analogues were biologically evaluated for their cytotoxic properties, leading to the identification of a number of compounds with exceptionally potent antitumor activities suitable for further development as potential antibody-drug conjugate payloads, single drugs, or drug combinations for cancer therapies. Important structure-activity relationships within the thailanstatin family and structurally related compounds are discussed and are expected to be path-pointing for future studies.
报道了剪接体调节剂天然产物 thailanstatins A-C 和 spliceostatin D 的高效和选择性全合成。开发了多种立体选择性方法来构建各种四取代的二氢和四氢吡喃,作为这些天然存在的分子及其变体合成的前提。形成吡喃的反应利用 Heck/Saegusa-Ito 级联序列生成羟基 α,β,γ,δ-不饱和醛前体,然后进行催化剂控制的氧杂-Michael 环化,以高立体选择性得到四取代的二氢吡喃。随后对这些二氢吡喃体系进行优化的均相或多相氢化,以高立体选择性得到其四氢吡喃对应物。对合成的 thailanstatins 和相关类似物进行了细胞毒性评价,鉴定出了许多具有异常强大抗肿瘤活性的化合物,适合进一步开发为潜在的抗体药物偶联物有效载荷、单一药物或癌症治疗的药物组合。讨论了 thailanstatin 家族和结构相关化合物中的重要构效关系,预计这些关系将为未来的研究提供方向。