Department of Chemistry and Biochemistry , University of California Los Angeles , Los Angeles , California 90095 , United States.
Laboratory for Therapeutic Development, Rosalind and Morris Goodman Cancer Research Centre and Department of Biochemistry , McGill University , Montreal , Quebec H3G 1Y6 , Canada.
J Org Chem. 2018 Mar 16;83(6):3090-3108. doi: 10.1021/acs.joc.7b02958. Epub 2018 Mar 7.
We describe the asymmetric synthesis of a highly substituted ω-octynoic acid derivative and demonstrate its utility for generating complex macrocycles from unprotected peptides. The molecule harbors an isolated quaternary center that displays four uniquely functionalized arms, each of which can be reacted orthogonally in sequence as the molecule is integrated into peptide structure. These processing sequences entail (1) scaffold ligation, (2) macrocyclization via internal aromatic alkylations or catalyzed etherifications, (3) acyliminium ion mediated embedding of condensed heterocycles, and (4) terminal alkyne derivatization or dimerization reactions. Numerous polycycles are prepared and fully characterized in this study. Factors that influence reaction efficiencies and selectivity are also probed. We construct a novel mimic of the second mitochondria derived activator of caspase using these techniques, wherein subtle variations in macrocycle connectivity have a marked impact on performance. In general, the chemistry is an important step toward facile, systematic access to complex peptidomimetics synthesized by directly altering the structure and properties of machine-made oligomers.
我们描述了一种高度取代的ω-辛炔酸衍生物的不对称合成,并展示了它在从非保护肽生成复杂大环中的应用。该分子具有孤立的季碳原子,显示出四个独特功能化的臂,每个臂都可以在分子整合到肽结构中时依次进行正交反应。这些处理序列包括(1)支架连接,(2)通过内部芳香烷基化或催化醚化进行大环化,(3)酰亚胺离子介导的缩合杂环嵌入,以及(4)末端炔烃衍生化或二聚反应。在这项研究中,制备并充分表征了许多多环化合物。还探讨了影响反应效率和选择性的因素。我们使用这些技术构建了第二个线粒体衍生的胱天蛋白酶激活剂的新型模拟物,其中大环连接的细微变化对性能有显著影响。总的来说,该化学是朝着通过直接改变机器制造的寡聚物的结构和性质轻松、系统地获得复杂肽模拟物的重要一步。