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首页> 外文期刊>Nature Communications >Short-chain ketone production by engineered polyketide synthases in Streptomyces albus
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Short-chain ketone production by engineered polyketide synthases in Streptomyces albus

机译:工程化聚酮化合物合成酶在白色链霉菌中生产短链酮

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摘要

Microbial production of fuels and commodity chemicals has been performed primarily using natural or slightly modified enzymes, which inherently limits the types of molecules that can be produced. Type I modular polyketide synthases (PKSs) are multi-domain enzymes that can produce unique and diverse molecular structures by combining particular types of catalytic domains in a specific order. This catalytic mechanism offers a wealth of engineering opportunities. Here we report engineered microbes that produce various short-chain (C5–C7) ketones using hybrid PKSs. Introduction of the genes into the chromosome of Streptomyces albus enables it to produce 1?g?·?l?1 of C6 and C7 ethyl ketones and several hundred mg?·?l?1 of C5 and C6 methyl ketones from plant biomass hydrolysates. Engine tests indicate these short-chain ketones can be added to gasoline as oxygenates to increase the octane of gasoline. Together, it demonstrates the efficient and renewable microbial production of biogasolines by hybrid enzymes.
机译:燃料和商品化学品的微生物生产主要是使用天然或经过轻微修饰的酶进行的,这固有地限制了可生产分子的类型。 I型模块化聚酮化合物合酶(PKS)是多域酶,通过按特定顺序组合特定类型的催化域,可以产生独特而多样的分子结构。这种催化机制提供了大量的工程机会。在这里,我们报道了使用杂交PKS产生各种短链(C5-C7)酮的工程微生物。将基因引入到白色链霉菌的染色体中使其能够从植物生物质水解物中产生> 1?g?·?l?1的C6和C7乙基酮以及数百mg?·?l?1的C5和C6甲基酮。 。发动机测试表明,这些短链酮可作为含氧化合物添加到汽油中,以增加汽油的辛烷值。在一起,它证明了杂化酶可高效,可再生地生产微生物微生物。

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