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Expedient synthesis of N-methyl tubulysin analogues with high cytotoxicity

机译:方便合成具有高细胞毒性的N-甲基微管溶素类似物

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摘要

An optimized and highly efficient synthesis of potent, bioactive N-methyl tubulysin analogues 2 and 4 has been achieved with > 40% overall yields. This synthesis represents a significant improvement over previously reported syntheses of these and related tubulysin analogues. The stereoselective synthesis of the unnatural amino acid tubuvaline is accomplished using tert-butanesulfinamide chemistry. N-Alkylation to form N-methyl tubuvaline is performed without protection of the tubuvaline alcohol by implementing a unique N-methylation strategy via formation and reduction of a 1,3-tetrahydrooxazine heterocycle. Acylation of the hindered N-methyl tubuvaline amine utilizes a novel sequence of O-acylation followed by an O- to N-acyl transfer to form the hindered amide bond between N-methyl tubuvaline and isoleucine. This high-yielding synthesis should enable the production of large quantities of material for biological studies.
机译:一种有效的,具有生物活性的N-甲基微管溶素类似物2和4的优化高效合成已实现,总收率> 40%。与先前报道的这些和相关微管溶素类似物的合成相比,该合成代表了显着的改进。非天然氨基酸微管蛋白的立体选择性合成是使用叔丁烷亚磺酰胺化学完成的。通过形成和还原1,3-四氢恶嗪杂环实现独特的N-甲基化策略,可以在不保护tubuvaline醇的情况下进行N-烷基化以形成N-甲基tubuvaline。 N-甲基微管缬胺受阻的酰基化利用O-酰化的新序列,然后由O-至N-酰基转移形成N-甲基微管缬氨酸和异亮氨酸之间的受阻酰胺键。这种高产的合成应能够生产大量用于生物学研究的材料。

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