Canonical fatty acid metabolism describes specific enzyme-substrate interactions that result in products with well-defined chain lengths, degree(s), and positions of unsaturation. Deep profiling of lipids across a range of prostate cancer cell lines reveals a variety of fatty acids with unusual site(s) of unsaturation that are not described by canonical pathways. The structure and abundance of these unusual lipids correlate with changes in desaturase expression and are strong indicators of cellular phenotype. Gene silencing and stable isotope tracing demonstrate that direct Delta 6 and Delta 8 desaturation of 14:0 (myristic), 16:0 (palmitic), and 18:0 (stearic) acids by FADS2 generate new families of unsaturated fatty acids (including n-8, ...
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...
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...