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  • Generation of Fluorinated Amychelin Siderophores against Pseudomonas aeruginosa Infections by a Combination of Genome Mining and Mutasynthesis.

Generation of Fluorinated Amychelin Siderophores against Pseudomonas aeruginosa Infections by a Combination of Genome Mining and Mutasynthesis.

Cell chemical biology (2020-11-14)
Feng Xie, Shengwang Dai, Yu Zhao, Pei Huang, Shen Yu, Biao Ren, Qiushui Wang, Zengchun Ji, Gil Alterovitz, Qi Zhang, Jingyu Zhang, Xiangyin Chen, Lan Jiang, Fuhang Song, Hongwei Liu, Frederick M Ausubel, Xueting Liu, Huanqin Dai, Lixin Zhang
ABSTRACT

Pioneering microbial genomic surveys have revealed numerous untapped biosynthetic gene clusters, unveiling the great potential of new natural products. Here, using a combination of genome mining, mutasynthesis, and activity screening in an infection model comprising Caenorhabditis elegans and Pseudomonas aeruginosa, we identified candidate virulence-blocking amychelin siderophore compounds from actinomycetes. Subsequently, we developed unreported analogs of these virulence-blocking siderophores with improved potency by exploiting an Amycolatopsis methanolica strain 239T chorismate to salicylate a biosynthetic subpathway for mutasynthesis. This allowed us to generate the fluorinated amychelin, fluoroamychelin I, which rescued C. elegans from P. aeruginosa-mediated killing with an EC50 value of 1.4 μM, outperforming traditional antibiotics including ceftazidime and meropenem. In general, this paper describes an efficient platform for the identification and production of classes of anti-microbial compounds with potential unique modes of action.

MATERIALS
Product Number
Brand
Product Description

Supelco
Malachite Green chloride, analytical standard
Sigma-Aldrich
Pyrophosphatase, Inorganic from baker′s yeast (S. cerevisiae), powder, ≥500 units/mg protein (E1%/280)