Branched five carbon (C5) alcohols are attractive targets for microbial production due to their desirable fuel properties and importance as platform chemicals. In this study, we engineered a heterologous isoprenoid pathway in E. coli for the high-yield production of 3-methyl-3-buten-1-ol, 3-methyl-2-buten-1-ol, and 3-methyl-1-butanol, three C5 alcohols that serve as potential biofuels. We first constructed a pathway for 3-methyl-3-buten-1-ol, where metabolite profiling identified NudB, a promiscuous phosphatase, as a likely pathway bottleneck. We achieved a 60% increase in the yield of 3-methyl-3-buten-1-ol by engineering the Shine-Dalgarno sequence of nudB, which increased protein levels by 9-fold and reduced isopentenyl diphosphate (IPP) ...
The Ehrlich pathway is a major route for the renewable production of higher alcohols. However, the p...
The biological diversity found throughout the world contains equally wondrous chemical diversity tha...
The isoprenoid family of compounds is estimated to contain ∼ 65,000 unique structures including medi...
Branched five carbon (C5) alcohols are attractive targets for microbial production due to their desi...
Abstract Background Current petroleum-derived fuels such as gasoline (C5–C12) and diesel (C15–C22) a...
Branched C5 alcohols are promising biofuels with favorable combustion properties. A mevalonate (MVA)...
Although bio-based fuels and chemicals offer an appealing and more sustainable alternative to tradit...
Isoprenoids, consisting of more than 50,000 compounds, have many functions in plants, animals, and m...
Terpenes constitute the largest class of natural products with over 55,000 compounds with versatile ...
Concerns over the sustainability and environmental impact of current processes that rely heavily on ...
Interest in producing biofuels from renewable sources has escalated due to energy and environmental ...
ABSTRACT Due to the increasing concerns about limited fossil resources and environmental problems, t...
Metabolism represents at least three and a half billion years of research and development in chemica...
Isoprenoid compounds are biologically ubiquitous, and their characteristic modularity has afforded p...
© 2020 The Authors Isoprenoids comprise one of the most chemically diverse family of natural product...
The Ehrlich pathway is a major route for the renewable production of higher alcohols. However, the p...
The biological diversity found throughout the world contains equally wondrous chemical diversity tha...
The isoprenoid family of compounds is estimated to contain ∼ 65,000 unique structures including medi...
Branched five carbon (C5) alcohols are attractive targets for microbial production due to their desi...
Abstract Background Current petroleum-derived fuels such as gasoline (C5–C12) and diesel (C15–C22) a...
Branched C5 alcohols are promising biofuels with favorable combustion properties. A mevalonate (MVA)...
Although bio-based fuels and chemicals offer an appealing and more sustainable alternative to tradit...
Isoprenoids, consisting of more than 50,000 compounds, have many functions in plants, animals, and m...
Terpenes constitute the largest class of natural products with over 55,000 compounds with versatile ...
Concerns over the sustainability and environmental impact of current processes that rely heavily on ...
Interest in producing biofuels from renewable sources has escalated due to energy and environmental ...
ABSTRACT Due to the increasing concerns about limited fossil resources and environmental problems, t...
Metabolism represents at least three and a half billion years of research and development in chemica...
Isoprenoid compounds are biologically ubiquitous, and their characteristic modularity has afforded p...
© 2020 The Authors Isoprenoids comprise one of the most chemically diverse family of natural product...
The Ehrlich pathway is a major route for the renewable production of higher alcohols. However, the p...
The biological diversity found throughout the world contains equally wondrous chemical diversity tha...
The isoprenoid family of compounds is estimated to contain ∼ 65,000 unique structures including medi...