作者
Gang Fan, Christopher M Dundas, Austin J Graham, Nathaniel A Lynd, Benjamin K Keitz
发表日期
2018/5/1
期刊
Proceedings of the National Academy of Sciences
卷号
115
期号
18
页码范围
4559-4564
出版商
National Academy of Sciences
简介
Metabolic engineering has facilitated the production of pharmaceuticals, fuels, and soft materials but is generally limited to optimizing well-defined metabolic pathways. We hypothesized that the reaction space available to metabolic engineering could be expanded by coupling extracellular electron transfer to the performance of an exogenous redox-active metal catalyst. Here we demonstrate that the electroactive bacterium Shewanella oneidensis can control the activity of a copper catalyst in atom-transfer radical polymerization (ATRP) via extracellular electron transfer. Using S. oneidensis, we achieved precise control over the molecular weight and polydispersity of a bioorthogonal polymer while similar organisms, such as Escherichia coli, showed no significant activity. We found that catalyst performance was a strong function of bacterial metabolism and specific electron transport proteins, both of which offer …
引用总数
201820192020202120222023202475101619203
学术搜索中的文章
G Fan, CM Dundas, AJ Graham, NA Lynd, BK Keitz - Proceedings of the National Academy of Sciences, 2018