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基因组学驱动发现DSM9509中的新型脂肽普兰他利汀A

Genomics-Driven Discovery of Plantariitin A, a New Lipopeptide in DSM9509.

作者信息

Wang Xiuling, Zhang Zhuo, Fu Jun, Li Ruijuan

机构信息

State Key Laboratory of Microbial Technology, Shandong University, Qingdao 266237, China.

出版信息

Molecules. 2025 Feb 14;30(4):868. doi: 10.3390/molecules30040868.

Abstract

A significant number of silent biosynthetic gene clusters (BGCs) within the genome remain uncharacterized, representing a valuable opportunity for the discovery of new natural products. In this research, the recombineering system ETh1h2e_yi23, which facilitates recombination in and was developed in our previous study, was used for mining the BGCs of DSM9509. By using this recombineering system, the constitutive promoter was precisely inserted into the genome, resulting in the activation of the silent BGC, which led to the production of a new lipopeptide named plantariitin A. A distinctive characteristic of this lipopeptide is the incorporation of a non-proteinogenic amino acid residue, i.e., amino-1,2,3,6-tetrahydro-2,6-dioxo-4-pyrimidinepropanoic acid (ATDPP), which has not been identified in other natural products. A biological activity assay demonstrated that plantariitin A exhibits anti-inflammatory activity. This study further substantiates the notion that the in situ activation of silent BGCs is a crucial strategy for the discovery of new natural products within the genus . With the increasing availability of genomic data and the development of bioinformatics tools, is poised to emerge as a prominent source for the development of new lipopeptides.

摘要

基因组中大量沉默的生物合成基因簇(BGCs)仍未得到表征,这为发现新的天然产物提供了宝贵机会。在本研究中,我们使用了重组工程系统ETh1h2e_yi23,该系统是我们先前研究中开发的,用于促进重组,对DSM9509的BGCs进行挖掘。通过使用该重组工程系统,组成型启动子被精确插入基因组,导致沉默的BGC被激活,从而产生了一种名为plantariitin A的新脂肽。这种脂肽的一个显著特征是掺入了一个非蛋白质ogenic氨基酸残基,即氨基-1,2,3,6-四氢-2,6-二氧代-4-嘧啶丙酸(ATDPP),这在其他天然产物中尚未被发现。生物活性测定表明plantariitin A具有抗炎活性。本研究进一步证实了沉默BGCs的原位激活是在该属中发现新天然产物的关键策略这一观点。随着基因组数据的日益丰富和生物信息学工具的发展,有望成为开发新脂肽的重要来源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/43dc/11858073/9654c8379b81/molecules-30-00868-g001.jpg

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