AI Article Synopsis

  • Natural products are vital in drug development due to increasing antibiotic resistance and the emergence of new diseases.
  • Advancements in genome sequencing and bioinformatics have unveiled the biosynthetic capabilities of actinomycetes, leading to significant discoveries.
  • A new biosynthetic gene cluster (BGC) related to diazo group formation was identified in a strain from leaf-cutting ants and was successfully activated to produce three compounds, named crexazones, with one being a novel structure.

Article Abstract

Natural products play a crucial role in drug development, addressing the escalating microbial resistance to antibiotics and the treatment of emerging diseases. Progress in genome sequencing techniques, coupled with the development of bioinformatics tools and the exploration of uncharted habitats, has highlighted the biosynthetic potential of actinomycetes. By in silico screening for diazo-related gene genomes from twelve strains isolated from leaf-cutting ants, the new biosynthetic gene cluster (BGC) was identified in sp. CS057. This cluster, highly conserved in several strains, contains genes related to diazo group formation and genes for the biosynthesis of 3,4-AHBA. By overexpressing the LuxR-like regulatory gene , we were able to activate the cluster, which encodes the biosynthesis of three 3,4-AHBA-derived compounds that we named crexazones (CRXs). The chemical structure of crexazones (CRXs) was determined by LC-DAD-HRMS-based dereplication and NMR spectroscopic analyses and was found to correspond to two known compounds, 3-acetamido-4-hydroxybenzoic acid (CRX1) and the phenoxazinone texazone (CRX3), and a novel 3,4-AHBA-containing compound herein designated as CRX2. Experimental proof linking the BGC to their encoded compounds was achieved by generating mutants in selected genes.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11429834PMC
http://dx.doi.org/10.3390/biom14091084DOI Listing

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