Thibodeaux Christopher J
McGill University, Department of Chemistry 801 Sherbrooke St West Montreal Quebec H3A0B8 Canada
Chem Sci. 2025 Sep 3. doi: 10.1039/d5sc90158h.
Natural products are biologically active molecules made by living organisms that serve a vital role in the pharmaceutical industry and account for (or have inspired) nearly 75% of human medicines. For decades, natural product biosynthetic enzymes have challenged chemists and enzymologists to harness these powerful catalysts for the production and engineering of high-value, structurally-complex chemicals. As genome science has rapidly advanced over the past two decades, the ribosomally-synthesized and post-translationally modified peptide (RiPP) family of natural products have emerged as a promising target for detailed investigation. Recently, Zhang and co-workers (Y. Jia, Y. Han, X. Liu and Q. Zhang, , 2025, , 10722, https://doi.org/10.1039/D5SC01546D) reported the characterization of thuricin CD (an antimicrobial RiPP) and revealed several unexpected surprises that have expanded our understanding of natural diversity in RiPP biosynthetic mechanisms. Their study calls for caution when making assumptions about these highly versatile biosynthetic pathways and highlights a need for detailed characterization of these pathways as a prelude to engineering applications.
天然产物是生物体制造的生物活性分子,在制药行业中发挥着至关重要的作用,占人类药物的近75%(或为人类药物提供了灵感)。几十年来,天然产物生物合成酶一直促使化学家和酶学家利用这些强大的催化剂来生产和改造高价值、结构复杂的化学品。在过去二十年中,随着基因组科学的迅速发展,核糖体合成和翻译后修饰肽(RiPP)类天然产物已成为详细研究的一个有前景的目标。最近,张及其同事(Y. Jia、Y. Han、X. Liu和Q. Zhang,《 》,2025年,《 》,10722,https://doi.org/10.1039/D5SC01546D)报道了苏云金素CD(一种抗菌RiPP)的特性,并揭示了几个意想不到的惊喜,这些惊喜扩展了我们对RiPP生物合成机制中自然多样性的理解。他们的研究呼吁在对这些高度通用的生物合成途径进行假设时要谨慎,并强调需要详细表征这些途径,作为工程应用的前奏。