CSIR-National Institute of Oceanography, Dona Paula 403004, Goa, India; Academy of Scientific and Innovative Research (AcSIR), Ghaziabad 201002, India.
Biotechnol Adv. 2024 Dec;77:108449. doi: 10.1016/j.biotechadv.2024.108449. Epub 2024 Sep 10.
This review examines a wide range of marine microbial-derived bioactive peptide molecules, emphasizing the significance of reverse engineering in their production. The discussion encompasses the advancements in Marine Natural Products (MNPs) bio-manufacturing through the integration of omics-driven microbial engineering and bioinformatics. The distinctive features of non-ribosomally synthesised peptides (NRPs), and ribosomally synthesised precursor peptides (RiPP) biosynthesis is elucidated and presented. Additionally, the article delves into the origins of common peptide modifications. It highlights various genome mining approaches for the targeted identification of Biosynthetic Gene Clusters (BGCs) and novel RiPP and NRPs-derived peptides. The review aims to demonstrate the advancements, prospects, and obstacles in engineering both RiPP and NRP biosynthetic pathways.
本文综述了广泛的海洋微生物来源的生物活性肽分子,强调了反向工程在其生产中的重要性。讨论包括通过组学驱动的微生物工程和生物信息学的整合,在海洋天然产物 (MNPs) 生物制造方面的进展。阐述和介绍了非核糖体合成肽 (NRPs) 和核糖体合成前体肽 (RiPP) 生物合成的特征。此外,本文还探讨了常见肽修饰的起源。它强调了各种基因组挖掘方法,用于有针对性地识别生物合成基因簇 (BGCs) 以及新型 RiPP 和 NRPs 衍生肽。本文旨在展示 RiPP 和 NRP 生物合成途径工程的进展、前景和障碍。