It is well established that most cancer cells take up an increased amount of glucose relative to that taken up by normal differentiated cells. The majority of this glucose carbon is secreted from the cell as lactate. The fate of the remaining glucose carbon, however, has not been well-characterized. Here we apply a novel combination of metabolomic technologies to track uniformly labeled glucose in HeLa cancer cells. We provide a list of specific intracellular metabolites that become enriched after being labeled for 48 h and quantitate the fraction of consumed glucose that ends up in proteins, peptides, sugars/glycerol, and lipids
The combination of high-resolution LC−MS-based untargeted metabolomics with stable isotope tracing p...
Saccharides in our diet are major sources of carbon for the formation of biomass such as proteins, l...
<p>Schematic illustration of the metabolic pathways studied using carbon tracing analysis and isotop...
ABSTRACT: It is well established that most cancer cells take up an increased amount of glucose relat...
It is well established that most cancer cells uptake increased amounts of glucose relative to normal...
In Saccharomyces cerevisiae cells exhibiting high-affinity glucose transport, the glucose consumptio...
The combination of high-resolution LC–MS-based untargeted metabolomics with stable isotope tracing p...
Protein production of mammalian-cell culture is limited due to accumulation of waste products such a...
Active brown adipose tissue (BAT) consumes copious amounts of glucose, yet how glucose metabolism su...
Active brown adipose tissue (BAT) consumes copious amounts of glucose, yet how glucose metabolism su...
In Saccharomyces cerevisiae, intracellular glucose levels impact glucose transport and regulate carb...
Metabolism underlies many important cellular decisions, such as the decisions to proliferate and dif...
HEK-293 is the most extensively used human cell line for the production of viral vectors and is gain...
13C labeling experiments in aerobic glucose limited cultures of Saccharomyces cerevisiae at four dif...
Cell membrane protein glycosylation is dependent on the metabolic state of the cell as well as exoge...
The combination of high-resolution LC−MS-based untargeted metabolomics with stable isotope tracing p...
Saccharides in our diet are major sources of carbon for the formation of biomass such as proteins, l...
<p>Schematic illustration of the metabolic pathways studied using carbon tracing analysis and isotop...
ABSTRACT: It is well established that most cancer cells take up an increased amount of glucose relat...
It is well established that most cancer cells uptake increased amounts of glucose relative to normal...
In Saccharomyces cerevisiae cells exhibiting high-affinity glucose transport, the glucose consumptio...
The combination of high-resolution LC–MS-based untargeted metabolomics with stable isotope tracing p...
Protein production of mammalian-cell culture is limited due to accumulation of waste products such a...
Active brown adipose tissue (BAT) consumes copious amounts of glucose, yet how glucose metabolism su...
Active brown adipose tissue (BAT) consumes copious amounts of glucose, yet how glucose metabolism su...
In Saccharomyces cerevisiae, intracellular glucose levels impact glucose transport and regulate carb...
Metabolism underlies many important cellular decisions, such as the decisions to proliferate and dif...
HEK-293 is the most extensively used human cell line for the production of viral vectors and is gain...
13C labeling experiments in aerobic glucose limited cultures of Saccharomyces cerevisiae at four dif...
Cell membrane protein glycosylation is dependent on the metabolic state of the cell as well as exoge...
The combination of high-resolution LC−MS-based untargeted metabolomics with stable isotope tracing p...
Saccharides in our diet are major sources of carbon for the formation of biomass such as proteins, l...
<p>Schematic illustration of the metabolic pathways studied using carbon tracing analysis and isotop...