脱羧
化学
氧化脱羧
NAD+激酶
氧化磷酸化
格式化
电子转移
酶
有机化学
催化作用
生物化学
作者
Alexander Dennig,Miriam Kuhn,Sebastian Tassoti,Anja Thiessenhusen,Stefan Gilch,Thomas Bülter,Thomas Haas,Mélanie Hall,Kurt Faber
标识
DOI:10.1002/anie.201502925
摘要
The enzymatic oxidative decarboxylation of linear short-chain fatty acids (C4:0-C9:0) employing the P450 monooxygenase OleT, O2 as the oxidant, and NAD(P)H as the electron donor gave the corresponding terminal C3 to C8 alkenes with product titers of up to 0.93 g L(-1) and TTNs of >2000. Key to this process was the construction of an efficient electron-transfer chain employing putidaredoxin CamAB in combination with NAD(P)H recycling at the expense of glucose, formate, or phosphite. This system allows for the biocatalytic production of industrially important 1-alkenes, such as propene and 1-octene, from renewable resources for the first time.
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