Shi Ying, Xia Yinzheng, Gao Weijiang, Wang Jingxue, Shi Bing, Wang Huan
State Key Laboratory of Coordination Chemistry, Chemistry and Biomedicine Innovation Center of Nanjing University, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210093, China.
Nat Prod Rep. 2025 May 22;42(5):763-773. doi: 10.1039/d5np00001g.
Covering: 2019 to 2024Peptide macrocyclization stands as the pivotal step in the biosynthesis journey of bioactive cyclic peptide natural products, spanning both ribosomal and non-ribosomal origins. Beyond the enzymatic N- to C-terminus macrocyclization, natural cyclic peptides frequently display side chain-to-side chain crosslinks, which markedly bolster their stability and biological potency. Traditionally, histidine, with its imidazole side chain, has been regarded as chemically unreactive, leading to relatively sparse reports of histidine-containing crosslinks in cyclic peptide natural products. However, recent advancements in research have illuminated a novel perspective on the role of histidine (His) residues in peptide macrocyclization, revealing that His participation in this process is far more ubiquitous than previously envisioned. This highlight underscores the significance of His-containing crosslinks in natural cyclic peptides and delves into the enzymatic mechanisms underlying their formation.
2019年至2024年
肽的大环化是生物活性环肽天然产物生物合成过程中的关键步骤,这些天然产物既有核糖体起源的,也有非核糖体起源的。除了酶促的从N端到C端的大环化外,天然环肽还经常显示侧链到侧链的交联,这显著增强了它们的稳定性和生物活性。传统上,带有咪唑侧链的组氨酸被认为在化学上是不活泼的,导致环肽天然产物中含组氨酸交联的报道相对较少。然而,最近的研究进展为组氨酸(His)残基在肽大环化中的作用揭示了一个新的视角,表明His参与这一过程比以前预想的更为普遍。本综述强调了天然环肽中含His交联的重要性,并深入探讨了其形成的酶促机制。