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首页> 外文期刊>The Journal of Antibiotics: An International Journal >Insights into polyketide biosynthesis gained from repurposing antibiotic-producing polyketide synthases to produce fuels and chemicals
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Insights into polyketide biosynthesis gained from repurposing antibiotic-producing polyketide synthases to produce fuels and chemicals

机译:洞察含有重新施用抗生素的聚酮合成酶的聚酮化合物生物合成酶以产生燃料和化学物质

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摘要

Complex polyketides comprise a large number of natural products that have broad application in medicine and agriculture. They are produced in bacteria and fungi from enzyme complexes named type I polyketide synthases (PKSs) that are composed of multifunctional polypeptides containing discrete enzymatic domains organized into modules. The modular nature of PKSs has enabled a multitude of efforts to engineer the PKS genes to produce novel polyketides with enhanced or new properties. We have repurposed PKSs, employing up to three modules to produce a number of short-chain molecules that could have applications as fuels or industrial chemicals. Examining the enzymatic functions in vitro of these repurposed PKSs, we have uncovered a number of expanded substrate specificities and requirements of various PKS domains not previously reported and determined an unexpected difference in the order of enzymatic reactions within a module. In addition, we were able to efficiently change the stereochemistry of side chains in selected PKS products.
机译:复合聚酮化合物包括大量具有广泛应用于医学和农业的天然产物。它们是由名为I型聚酮化合成酶(PKS)的酶络合物的细菌和真菌产生,所述多肽由含有组织成模块的离散酶域的多功能多肽组成。 PKSS的模块化性质使得能够为PKS基因制造出具有增强或新性质的新型聚酮化合物的多种努力。我们已经重新培养了PKS,采用多达三种模块,产生一些可以将应用作为燃料或工业化学品的短链分子。检查这些可重复的PKS体外酶功能,我们已经发现了许多未预先报道的各种PKS结构域的膨胀底族特异性和要求,并确定模块内酶促反应顺序的意外差异。此外,我们能够有效地改变所选PKS产品中的侧链的立体化学。

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