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Industrial production application microbial biosynthesis and degradation of furanic compound hydroxymethylfurfural (HMF)

机译:呋喃化合物羟甲基糠醛(HMF)的工业生产应用微生物生物合成和降解

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摘要

Biorefinery is increasingly embraced as an environmentally friendly approach that has the potential to shift current petroleum-based chemical and material manufacture to renewable sources. Furanic compounds, particularly hydroxymethylfurfurals (HMFs) are platform chemicals, from which a variety of value-added chemicals can be derived. Their biomanufacture and biodegradation therefore will have a large impact. Here, we first review the potential industrial production of 4-HMF and 5-HMF, then we summarize the known microbial biosynthesis and biodegradation pathways of furanic compounds with emphasis on the enzymes in each pathway. We especially focus on the structure, function and catalytic mechanism of MfnB (4-(hydroxymethyl)-2-furancarboxyaldehyde-phosphate synthase) and hmfH (HMF oxidase), which catalyze the formation of phosphorylated 4-HMF and the oxidation of 5-HMF to furandicarboxylic acid (2,5-FDCA), respectively. Understanding the structure-function relationship of these enzymes will provide important insights in enzyme engineering, which eventually will find industry applications in mass-production of biobased polymers and other bulk chemicals in future.
机译:生物炼油厂越来越被认为是一种环境友好的方法,它有可能将目前基于石油的化学和材料制造转移到可再生资源。呋喃化合物,尤其是羟甲基糠醛(HMF)是平台化学品,从中可以衍生出各种增值化学品。因此,它们的生物制造和生物降解将产生重大影响。在这里,我们首先回顾了4-HMF和5-HMF的潜在工业生产,然后我们总结了呋喃类化合物的已知微生物生物合成和生物降解途径,重点是每种途径中的酶。我们特别关注MfnB(4-(羟甲基)-2-呋喃羧醛-磷酸合酶)和hmfH(HMF氧化酶)的结构,功能和催化机理,它们催化磷酸化的4-HMF的形成和5-HMF的氧化。分别为呋喃二甲酸(2,5-FDCA)。了解这些酶的结构-功能关系将为酶工程学提供重要的见解,最终将在将来大规模生产生物基聚合物和其他散装化学品中找到工业应用。

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