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Bacterial MbtH-like Proteins Stimulate NonribosomalPeptide Synthetase-Derived Secondary Metabolism in Filamentous Fungi

机译:细菌MbtH样蛋白刺激非核糖体丝状真菌中肽合成酶衍生的次级代谢

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摘要

Filamentous fungi are known producers of bioactive natural products, low molecular weight molecules that arise from secondary metabolism. MbtH-like proteins (MLPs) are small (∼10 kDa) proteins, which associate noncovalently with adenylation domains of some bacterial nonribosomal peptide synthetases (NRPS). MLPs promote the folding, stability, and activity of NRPS enzymes. MLPs are highly conserved among a wide range of bacteria; however, they are absent from all fungal species sequenced to date. We analyzed the interaction potential of bacterial MLPs with eukaryotic NRPS enzymes first using crystal structures, with results suggesting a conservation of the interaction surface. Subsequently, we transformed five MLPs into Penicillium chrysogenum strains and analyzed changes in NRPS-derived metabolite profiles. Three of the five transformed MLPs increased the rate of nonribosomal peptide formation and elevated the concentrations of intermediate and final products of the penicillin, roquefortine, chrysogine, and fungisporin biosynthetic pathways. Our results suggest that even though MLPs are not found in the fungal domain of life,they can be used in fungal hosts as a tool for natural product discoveryand biotechnological production.
机译:丝状真菌是已知的生物活性天然产物的生产者,所述天然活性产物是由次级代谢产生的低分子量分子。 MbtH样蛋白(MLP)是小的(〜10 kDa)蛋白,与某些细菌非核糖体肽合成酶(NRPS)的腺苷酸化域非共价结合。 MLP促进NRPS酶的折叠,稳定性和活性。 MLP在各种细菌中高度保守;但是,迄今为止,所有真菌种类中都没有它们。我们首先使用晶体结构分析了细菌MLP与真核NRPS酶的相互作用潜力,结果表明了相互作用表面的保守性。随后,我们将5个MLP转化为产黄青霉菌株,并分析了NRPS衍生的代谢产物谱的变化。五个转化的MLP中的三个增加了非核糖体肽形成的速率,并提高了青霉素,roquefortine,chssogine和真菌孢子生物合成途径的中间产物和终产物的浓度。我们的结果表明,即使在生命的真菌域中未发现MLP,它们可以在真菌宿主中用作天然产物发现的工具和生物技术生产。

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