Graduate School of Pharmaceutical Sciences, Kyoto University, Yoshida, Sakyo-ku, Kyoto 606-8501, Japan.
J Am Chem Soc. 2023 Aug 30;145(34):19067-19075. doi: 10.1021/jacs.3c06931. Epub 2023 Aug 18.
The introduction of a chlorine atom could potentially endow peptide derivatives with notable bioactivity and applicability. However, despite considerable recent progress in C(sp)-H functionalization chemistry, a general method for the site-selective chlorination of inert aliphatic C-H bonds in peptides still remains elusive. Herein, we report a site-selective C(sp)-H chlorination of oligopeptides based on an -chloropeptide strategy. -chloropeptides, which are easily prepared from the corresponding native oligopeptides, are smoothly degraded in the presence of an appropriate copper catalyst, and a subsequent 1,5-hydrogen atom transfer affords γ- or δ-chlorinated peptides in excellent yield. A wide variety of amino acid residues can thus be site-selectively chlorinated in a predictable manner. This method hence enables the efficient synthesis of otherwise less accessible, chlorine-containing peptide fragments of natural peptides. We moreover demonstrate here the successful estimation of the stereochemistry of the chlorinated carbon atom in aquimarin A. Furthermore, we reveal that side-chain-chlorinated peptides can serve as highly useful substructures with a fine balance between stability and reactivity, which renders them promising targets for synthetic and medicinal applications.
引入氯原子可以为肽衍生物赋予显著的生物活性和适用性。然而,尽管 C(sp)-H 功能化化学在最近取得了相当大的进展,但在肽中惰性脂肪族 C-H 键的位点选择性氯化仍然难以捉摸。在此,我们报告了一种基于 -氯肽策略的寡肽的位点选择性 C(sp)-H 氯化。 -氯肽很容易从相应的天然寡肽制备,在合适的铜催化剂存在下可以顺利降解,随后的 1,5-氢原子转移以优异的产率得到γ-或δ-氯化肽。因此,可以以可预测的方式对各种氨基酸残基进行位点选择性氯化。该方法因此能够有效地合成天然肽中原本难以获得的含氯肽片段。此外,我们在这里成功估计了 aquimarin A 中氯化碳原子的立体化学。此外,我们揭示了侧链氯化肽可以作为具有稳定性和反应性之间良好平衡的非常有用的亚结构,这使它们成为合成和药物应用的有前途的目标。