AbstractLong-chain fatty acid amides are cell-signaling lipids identified in mammals and, recently, in invertebrates, as well. Many details regarding fatty acid amide metabolism remain unclear. Herein, we demonstrate that Drosophila melanogaster is an excellent model system for the study long-chain fatty acid amide metabolism as we have quantified the endogenous levels of N-acylglycines, N-acyldopamines, N-acylethanolamines, and primary fatty acid amides by LC/QTOF-MS. Growth of D. melanogaster on media supplemented with [1-13C]-palmitate lead to a family of 13C-palmitate-labeled fatty acid amides in the fly heads. The [1-13C]-palmitate feeding studies provide insight into the biosynthesis of the fatty acid amides
Recent advances in the field of metabolomics have established the fruit fly Drosophila melanogaster ...
The fruit fly Drosophila melanogaster is an emerging model system in lipid metabolism research. Lipi...
Metabolomics can provide exciting insights into organismal function, but most work on simple models ...
AbstractLong-chain fatty acid amides are cell-signaling lipids identified in mammals and, recently, ...
The vast variety of long-chain fatty acid amides identified in biological systems is intriguing. The...
A fatty acid amide is precisely as the name suggests: A fatty acid (CHn-COOH), in which the hydroxyl...
Lipid metabolism is critical to coordinate organ development and physiology in response to tissue-au...
International audienceIn terrestrial insects, cuticular hydrocarbons (CHCs) provide protection from ...
Proteins, nucleic acids, and lipids are three major compo-nents of the cell. Despite a few basic met...
International audienceFatty acid (FA) metabolism plays a central role in body homeostasis and relate...
SummaryLipids play critical roles in energy homeostasis, membrane structure, and signaling. Using li...
Lipids play critical roles in energy homeostasis, membrane structure, and signaling. Using liquid ch...
Metabolomics can provide exciting insights into organismal function, but most work on simple models ...
Drosophila melanogaster produces fatty acid amides, and thus, provides a model to unravel the pathwa...
Fatty acid amides are an emerging family of bioactive lipids that consists of N-acylethanolamines, N...
Recent advances in the field of metabolomics have established the fruit fly Drosophila melanogaster ...
The fruit fly Drosophila melanogaster is an emerging model system in lipid metabolism research. Lipi...
Metabolomics can provide exciting insights into organismal function, but most work on simple models ...
AbstractLong-chain fatty acid amides are cell-signaling lipids identified in mammals and, recently, ...
The vast variety of long-chain fatty acid amides identified in biological systems is intriguing. The...
A fatty acid amide is precisely as the name suggests: A fatty acid (CHn-COOH), in which the hydroxyl...
Lipid metabolism is critical to coordinate organ development and physiology in response to tissue-au...
International audienceIn terrestrial insects, cuticular hydrocarbons (CHCs) provide protection from ...
Proteins, nucleic acids, and lipids are three major compo-nents of the cell. Despite a few basic met...
International audienceFatty acid (FA) metabolism plays a central role in body homeostasis and relate...
SummaryLipids play critical roles in energy homeostasis, membrane structure, and signaling. Using li...
Lipids play critical roles in energy homeostasis, membrane structure, and signaling. Using liquid ch...
Metabolomics can provide exciting insights into organismal function, but most work on simple models ...
Drosophila melanogaster produces fatty acid amides, and thus, provides a model to unravel the pathwa...
Fatty acid amides are an emerging family of bioactive lipids that consists of N-acylethanolamines, N...
Recent advances in the field of metabolomics have established the fruit fly Drosophila melanogaster ...
The fruit fly Drosophila melanogaster is an emerging model system in lipid metabolism research. Lipi...
Metabolomics can provide exciting insights into organismal function, but most work on simple models ...