代谢工程
生物燃料
生化工程
石油化工
合成生物学
生物制造
生物技术
生物转化
化学
生物化学
生物
有机化学
计算生物学
发酵
酶
工程类
作者
Kajan Srirangan,Mark R. Bruder,Lamees Akawi,Dragan Miscevic,Shane Kilpatrick,Murray Moo‐Young,C. Perry Chou
标识
DOI:10.1080/07388551.2016.1216391
摘要
Diminishing fossil fuel reserves and mounting environmental concerns associated with petrochemical manufacturing practices have generated significant interests in developing whole-cell biocatalytic systems for the production of value-added chemicals and biofuels. Although acetyl-CoA is a common natural biogenic precursor for the biosynthesis of numerous metabolites, propionyl-CoA is unpopular and non-native to most organisms. Nevertheless, with its C3-acyl moiety as a discrete building block, propionyl-CoA can serve as another key biogenic precursor to several biological products of industrial importance. As a result, engineering propionyl-CoA metabolism, particularly in genetically tractable hosts with the use of inexpensive feedstocks, has paved an avenue for novel biomanufacturing. Herein, we present a systematic review on manipulation of propionyl-CoA metabolism as well as relevant genetic and metabolic engineering strategies for microbial production of value-added chemicals and biofuels, including odd-chain alcohols and organic acids, bio(co)polymers and polyketides. [Formula: see text].
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