0000000000172722

AUTHOR

Sarah P. Niehs

0000-0002-2012-5949

showing 3 related works from this author

Unexpected Bacterial Origin of the Antibiotic Icosalide: Two-Tailed Depsipeptide Assembly in Multifarious Burkholderia Symbionts.

2018

Icosalide is an unusual two-tailed lipocyclopeptide antibiotic that was originally isolated from a fungal culture. Yet, its biosynthesis and ecological function have remained enigmatic. By genome mining and metabolic profiling of a bacterial endosymbiont ( Burkholderia gladioli) of the pest beetle Lagria villosa, we unveiled a bacterial origin of icosalide. Functional analysis of the biosynthetic gene locus revealed an unprecedented nonribosomal peptide synthetase (NRPS) that incorporates two β-hydroxy acids by means of two starter condensation domains in different modules. This unusual assembly line, which may inspire new synthetic biology approaches, is widespread among many symbiotic Bur…

0301 basic medicinemedicine.drug_classBurkholderia030106 microbiologyAntibioticsBiochemistryGenomePeptides Cyclic03 medical and health sciencesGene clustermedicineAnimalsPeptide SynthasesSymbiosisGeneticsDepsipeptidebiologyPseudomonasGeneral Medicinebiology.organism_classificationAnti-Bacterial AgentsColeoptera030104 developmental biologyBurkholderiaGenes BacterialMolecular MedicineIdentification (biology)ACS chemical biology
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Insect-associated bacteria assemble the antifungal butenolide gladiofungin by non-canonical polyketide chain termination

2020

Abstract Genome mining of one of the protective symbionts (Burkholderia gladioli) of the invasive beetle Lagria villosa revealed a cryptic gene cluster that codes for the biosynthesis of a novel antifungal polyketide with a glutarimide pharmacophore. Targeted gene inactivation, metabolic profiling, and bioassays led to the discovery of the gladiofungins as previously‐overlooked components of the antimicrobial armory of the beetle symbiont, which are highly active against the entomopathogenic fungus Purpureocillium lilacinum. By mutational analyses, isotope labeling, and computational analyses of the modular polyketide synthase, we found that the rare butenolide moiety of gladiofungins deriv…

Burkholderia gladioliAntifungal AgentsBurkholderianatural productsantifungal compoundsMicrobial Sensitivity TestsBiosynthesis010402 general chemistry01 natural sciencesCatalysisPurpureocillium lilacinumPolyketide4-ButyrolactonePolyketide synthasegenome miningGene clusterAnimalsButenolidebiology010405 organic chemistryCommunicationGeneral Chemistrybiology.organism_classificationCommunications0104 chemical sciencesColeopteraBiochemistryPolyketidesHypocrealesbiology.proteinLactimidomycinPharmacophore
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Biosynthesis of Sinapigladioside, an Antifungal Isothiocyanate from Burkholderia Symbionts

2021

Abstract Sinapigladioside is a rare isothiocyanate‐bearing natural product from beetle‐associated bacteria (Burkholderia gladioli) that might protect beetle offspring against entomopathogenic fungi. The biosynthetic origin of sinapigladioside has been elusive, and little is known about bacterial isothiocyanate biosynthesis in general. On the basis of stable‐isotope labeling, bioinformatics, and mutagenesis, we identified the sinapigladioside biosynthesis gene cluster in the symbiont and found that an isonitrile synthase plays a key role in the biosynthetic pathway. Genome mining and network analyses indicate that related gene clusters are distributed across various bacterial phyla including…

Burkholderia gladioliAntifungal AgentsBurkholderianatural productsMolecular ConformationMutagenesis (molecular biology technique)Microbial Sensitivity Tests010402 general chemistry01 natural sciencesBiochemistrychemistry.chemical_compoundBiosynthesisVery Important PaperIsothiocyanatesGene clustergenome miningBacterial phylaMolecular Biologybiology010405 organic chemistryCommunicationOrganic Chemistrybiology.organism_classificationCommunications0104 chemical sciencesBiosynthetic PathwaysBurkholderiaBiochemistrychemistryIsothiocyanateHypocrealesMolecular MedicinebiosynthesisisothiocyanateBacteriaChembiochem
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