Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Rapid Regulation of the Methylerythritol 4-Phosphate Pathway during Isoprene Synthesis

View through CrossRef
Abstract More volatile organic carbon is lost from plants as isoprene than any other molecule. This flux of carbon to the atmosphere affects atmospheric chemistry and can serve as a substrate for ozone production in polluted air. Isoprene synthesis may help leaves cope with heatflecks and active oxygen species. Isoprene synthase, an enzyme related to monoterpene synthases, converts dimethylallyl diphosphate derived from the methylerythritol 4-phosphate pathway to isoprene. We used dideuterated deoxyxylulose (DOX-d2) to study the regulation of the isoprene biosynthetic pathway. Exogenous DOX-d2 displaced endogenous sources of carbon for isoprene synthesis without increasing the overall rate of isoprene synthesis. However, at higher concentrations, DOX-d2 completely suppressed isoprene synthesis from endogenous sources and increased the overall rate of isoprene synthesis. We interpret these results to indicate strong feedback control of deoxyxylulose-5-phosphate synthase. We related the emission of labeled isoprene to the concentration of labeled dimethylallyl diphosphate in order to estimate the in situ K  m of isoprene synthase. The results confirm that isoprene synthase has a K  m 10- to 100-fold higher for its allylic diphosphate substrate than related monoterpene synthases for geranyl diphosphate.
Title: Rapid Regulation of the Methylerythritol 4-Phosphate Pathway during Isoprene Synthesis
Description:
Abstract More volatile organic carbon is lost from plants as isoprene than any other molecule.
This flux of carbon to the atmosphere affects atmospheric chemistry and can serve as a substrate for ozone production in polluted air.
Isoprene synthesis may help leaves cope with heatflecks and active oxygen species.
Isoprene synthase, an enzyme related to monoterpene synthases, converts dimethylallyl diphosphate derived from the methylerythritol 4-phosphate pathway to isoprene.
We used dideuterated deoxyxylulose (DOX-d2) to study the regulation of the isoprene biosynthetic pathway.
Exogenous DOX-d2 displaced endogenous sources of carbon for isoprene synthesis without increasing the overall rate of isoprene synthesis.
However, at higher concentrations, DOX-d2 completely suppressed isoprene synthesis from endogenous sources and increased the overall rate of isoprene synthesis.
We interpret these results to indicate strong feedback control of deoxyxylulose-5-phosphate synthase.
We related the emission of labeled isoprene to the concentration of labeled dimethylallyl diphosphate in order to estimate the in situ K  m of isoprene synthase.
The results confirm that isoprene synthase has a K  m 10- to 100-fold higher for its allylic diphosphate substrate than related monoterpene synthases for geranyl diphosphate.

Related Results

The microbiology of isoprene cycling in aquatic ecosystems
The microbiology of isoprene cycling in aquatic ecosystems
Isoprene (2-methyl-1,3-butadiene) is emitted in vast quantities (>500 Tg C yr-1). Most isoprene is emitted by trees, but there is still incomplete understanding of the diversity...
Biochemical regulation of isoprene emission
Biochemical regulation of isoprene emission
ABSTRACTIsoprene (C5H8) is emitted from many plants and has a substantial effect on atmospheric chemistry. There are several models to estimate the rate of isoprene emission used t...
Characterization of marine isoprene‐degrading communities
Characterization of marine isoprene‐degrading communities
Summary Isoprene is a volatile and climate‐altering hydrocarbon with an atmospheric concentration similar to that of methane. It is well esta...
Human breath isoprene and its relation to blood cholesterol levels: new measurements and modeling
Human breath isoprene and its relation to blood cholesterol levels: new measurements and modeling
Numerous publications have described measurements of breath isoprene in humans, and there has been a hope that breath isoprene analyses could be a noninvasive diagnostic tool to as...
Effect of isoprene emissions from major forests on ozone formation in the city of Shanghai, China
Effect of isoprene emissions from major forests on ozone formation in the city of Shanghai, China
Abstract. Ambient surface level concentrations of isoprene (C5H8) were measured in the major forest regions located south of Shanghai, China. Because there is a large coverage of b...
Effect of isoprene emissions from major forests on ozone formation in the city of Shanghai, China
Effect of isoprene emissions from major forests on ozone formation in the city of Shanghai, China
Abstract. Ambient surface level concentrations of isoprene (C5H8) were measured in the major forest regions located south of Shanghai, China. Because there is a large coverage of b...
Identification and characterisation of isoprene‐degrading bacteria in an estuarine environment
Identification and characterisation of isoprene‐degrading bacteria in an estuarine environment
Summary Approximately one‐third of volatile organic compounds (VOCs) emitted to the atmosphere consists of isoprene, originating from the ter...

Back to Top