The cellular energy and biomass demands of cancer drive a complex dynamic between uptake of extracellular fatty acids (FA) and their de novo synthesis. Given that oxidation of de novo synthesized FAs for energy would result in net-energy loss, there is an implication that FAs from these two sources must have distinct metabolic fates; however, hitherto all FAs have been considered part of a common pool. To probe potential metabolic partitioning of cellular FAs, cancer cells were supplemented with stable isotope-labeled FAs. Structural analysis of the resulting glycerophospholipids revealed that labeled FAs from uptake were largely incorporated to canonical (sn-) positions on the glycerol backbone. Surprisingly, labelled FA uptake also disrup...
Canonical fatty acid metabolism describes specific enzyme-substrate interactions that result in prod...
Canonical fatty acid metabolism describes specific enzyme-substrate interactions that result in prod...
Canonical fatty acid metabolism describes specific enzyme-substrate interactions that result in prod...
The cellular energy and biomass demands of cancer drive a complex dynamic between uptake of extracel...
The cellular energy and biomass demands of cancer drive a complex dynamic between uptake of extracel...
The cellular energy and biomass demands of cancer drive a complex dynamic between uptake of extracel...
The cellular energy and biomass demands of cancer drive a complex dynamic between uptake of extracel...
The cellular energy and biomass demands of cancer drive a complex dynamic between uptake of extracel...
The cellular energy and biomass demands of cancer drive a complex dynamic between uptake of extracel...
Canonical fatty acid metabolism describes specific enzyme-substrate interactions that result in prod...
Canonical fatty acid metabolism describes specific enzyme-substrate interactions that result in prod...
Canonical fatty acid metabolism describes specific enzyme-substrate interactions that result in prod...
Canonical fatty acid metabolism describes specific enzyme-substrate interactions that result in prod...
Canonical fatty acid metabolism describes specific enzyme-substrate interactions that result in prod...
Canonical fatty acid metabolism describes specific enzyme-substrate interactions that result in prod...
Canonical fatty acid metabolism describes specific enzyme-substrate interactions that result in prod...
Canonical fatty acid metabolism describes specific enzyme-substrate interactions that result in prod...
Canonical fatty acid metabolism describes specific enzyme-substrate interactions that result in prod...
The cellular energy and biomass demands of cancer drive a complex dynamic between uptake of extracel...
The cellular energy and biomass demands of cancer drive a complex dynamic between uptake of extracel...
The cellular energy and biomass demands of cancer drive a complex dynamic between uptake of extracel...
The cellular energy and biomass demands of cancer drive a complex dynamic between uptake of extracel...
The cellular energy and biomass demands of cancer drive a complex dynamic between uptake of extracel...
The cellular energy and biomass demands of cancer drive a complex dynamic between uptake of extracel...
Canonical fatty acid metabolism describes specific enzyme-substrate interactions that result in prod...
Canonical fatty acid metabolism describes specific enzyme-substrate interactions that result in prod...
Canonical fatty acid metabolism describes specific enzyme-substrate interactions that result in prod...
Canonical fatty acid metabolism describes specific enzyme-substrate interactions that result in prod...
Canonical fatty acid metabolism describes specific enzyme-substrate interactions that result in prod...
Canonical fatty acid metabolism describes specific enzyme-substrate interactions that result in prod...
Canonical fatty acid metabolism describes specific enzyme-substrate interactions that result in prod...
Canonical fatty acid metabolism describes specific enzyme-substrate interactions that result in prod...
Canonical fatty acid metabolism describes specific enzyme-substrate interactions that result in prod...