异丁醇
代谢工程
生化工程
化学
发酵
生物燃料
下游加工
丁醇
生物化学
合成生物学
生物技术
有机化学
酒
乙醇
生物信息学
工程类
生物
酶
作者
Jan‐Karl Guterl,Daniel Garbe,Jörg Carsten,Fabian Steffler,Bettina Sommer,Steven Reiße,Anja Philipp,Martina Haack,Broder Rühmann,Andre Koltermann,Ulrich Kettling,Thomas Brück,Volker Sieber
出处
期刊:Chemsuschem
[Wiley]
日期:2012-10-19
卷期号:5 (11): 2165-2172
被引量:228
标识
DOI:10.1002/cssc.201200365
摘要
Abstract The limited supply of fossil resources demands the development of renewable alternatives to petroleum‐based products. Here, biobased higher alcohols such as isobutanol are versatile platform molecules for the synthesis of chemical commodities and fuels. Currently, their fermentation‐based production is limited by the low tolerance of microbial production systems to the end products and also by the low substrate flux into cell metabolism. We developed an innovative cell‐free approach, utilizing an artificial minimized glycolytic reaction cascade that only requires one single coenzyme. Using this toolbox the cell‐free production of ethanol and isobutanol from glucose was achieved. We also confirmed that these streamlined cascades functioned under conditions at which microbial production would have ceased. Our system can be extended to an array of industrially‐relevant molecules. Application of solvent‐tolerant biocatalysts potentially allows for high product yields, which significantly simplifies downstream product recovery.
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