首页> 外文期刊>Journal of the American Chemical Society >Construction of Natural-Product-Like Cyclophane-Braced Peptide Macrocycles via sp~3 C-H Arylation
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Construction of Natural-Product-Like Cyclophane-Braced Peptide Macrocycles via sp~3 C-H Arylation

机译:通过sp〜3 C-H酰化构建类似天然产物环环烷的肽大环化合物

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Cyclic peptides have provided one of the most important platforms for exploration of biorelevant chemical space between small molecules and biologics. However, in comparison with the design and synthesis of small molecules, chemists' ability to fine-tune the three-dimensional structures and properties of cyclic peptides lag far behind. Intrigued by cyclophane peptide natural products, we wondered whether the rigid, planar, and hydrophobic cyclophane motif could provide a new design element for the synthesis of cyclic peptides with well-behaved 3D structures. Herein, we report a generally applicable method for synthesis of natural-product-like cyclophane-braced peptide macrocycles via Pd-catalyzed intramolecular C(sp(3))-H arylation with aryl iodides at the remote gamma position of various N-terminal aliphatic amino acid units using a simple picolinamide directing group. Products of high structural and stereochemical complexity were quickly assembled from easily accessible peptide precursors prepared by standard solid phase peptide synthesis. Many of these peptide macrocycles show highly ordered structures as revealed by X-ray crystallography. Remarkably, the PA-directed C(sp(3))-H cyclization reaction of unprotected peptide substrates carrying various free polar side chains proceeded with high efficiency and selectivity in aqueous media. This demonstrates not only the synthetic utility of Pd-catalyzed C(sp(3))-H functionalization reactions, but also offers a valuable new orthogonal reactivity for peptide chemistry.
机译:环肽为探索小分子与生物制剂之间的生物相关化学空间提供了最重要的平台之一。但是,与小分子的设计和合成相比,化学家对环肽的三维结构和性质进行微调的能力远远落后。受到环烷肽天然产物的吸引,我们想知道刚性,平面和疏水性环烷基序能否为合成具有良好3D结构的环肽提供新的设计元素。在这里,我们报告了通过钯催化的分子内C(sp(3))-H芳基化与芳基碘在各种N末端脂族的远程γ位置合成天然产物样环芳撑肽大环的普遍适用的方法氨基酸单元使用简单的吡咯酰胺引导基团。具有高结构和立体化学复杂性的产品可以通过标准固相肽合成制备的易于获得的肽前体快速组装而成。如X射线晶体学所揭示的,这些肽大环中的许多环显示出高度有序的结构。值得注意的是,PA保护的C(sp(3))-H环化反应的未受保护的带有各种游离极性侧链的肽底物在水性介质中的分离效率很高。这不仅证明了Pd催化的C(sp(3))-H功能化反应的合成效用,而且还为肽化学提供了有价值的新的正交反应性。

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