A New Type of Peroxisomal Acyl-Coenzyme A Synthetase from Arabidopsis thaliana Has the Catalytic Capacity to Activate Biosynthetic Precursors of Jasmonic Acid
A New Type of Peroxisomal Acyl-Coenzyme A Synthetase from Arabidopsis thaliana Has the Catalytic Capacity to Activate Biosynthetic Precursors of Jasmonic Acid
Arabidopsis thaliana contains a large number of genes that encode carboxylic acid-activating enzymes, including nine long-chain fatty acyl-CoA synthetases, four 4-coumarate:CoA ligases (4CL), and 25 4CL-like proteins of unknown biochemical function. Because of their high structural and sequence similarity with bona fide 4CLs and their highly hydrophobic putative substrate-binding pockets, the 4CL-like proteins At4g05160 and At5g63380 were selected for detailed analysis. Following heterologous expression, the purified proteins were subjected to a large scale screen to identify their preferred in vitro substrates. This study uncovered a significant activity of At4g05160 with medium-chain fatty acids, medium-chain fatty acids carrying a phenyl substitution, long-chain fatty acids, as well as the jasmonic acid precursors 12-oxo-phytodienoic acid and 3-oxo-2-(2'-pentenyl)-cyclopentane-1-hexanoic acid. The closest homolog of At4g05160, namely At5g63380, showed high activity with long-chain fatty acids and 12-oxo-phytodienoic acid, the latter representing the most efficiently converted substrate. By using fluorescent-tagged variants, we demonstrated that both 4CL-like proteins are targeted to leaf peroxisomes. Collectively, these data demonstrate that At4g05160 and At5g63380 have the capacity to contribute to jasmonic acid biosynthesis by initiating the beta-oxidative chain shortening of its precursors.
- Max Planck Institute for Plant Breeding Research Germany
- Leibniz Association Germany
- Max Planck Society Germany
Molecular Structure, Arabidopsis Proteins, Recombinant Fusion Proteins, Fatty Acids, Arabidopsis, Cyclopentanes, Acetates, Isoenzymes, Plant Leaves, Plant Growth Regulators, Gene Expression Regulation, Plant, Coenzyme A Ligases, Peroxisomes, Amino Acid Sequence, Oxylipins, Sequence Alignment, Phylogeny
Molecular Structure, Arabidopsis Proteins, Recombinant Fusion Proteins, Fatty Acids, Arabidopsis, Cyclopentanes, Acetates, Isoenzymes, Plant Leaves, Plant Growth Regulators, Gene Expression Regulation, Plant, Coenzyme A Ligases, Peroxisomes, Amino Acid Sequence, Oxylipins, Sequence Alignment, Phylogeny
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