Cancer cells exhibit a dynamic metabolic landscape and require a sufficient supply of nucleotides and other macromolecules to grow and proliferate. To meet the metabolic requirements for cell growth, cancer cells must stimulate de novo nucleotide synthesis to obtain adequate nucleotide pools to support nucleic acid and protein synthesis along with energy preservation, signaling activity, glycosylation mechanisms, and cytoskeletal function. Both oncogenes and tumor suppressors have recently been identified as key molecular determinants for de novo nucleotide synthesis that contribute to the maintenance of homeostasis and the proliferation of cancer cells. Inactivation of tumor suppressors such as TP53 and LKB1 and hyperactivation of the mTOR...
International audienceCancer development involves major alterations in cells' metabolism. Enhanced g...
SummaryChromosomal instability in early cancer stages is caused by stress on DNA replication. The mo...
Tumor cells have devised unique metabolic strategies to garner enough nutrients to sustain continuou...
Cancer cell proliferation and survival are dependent upon on a sufficient supply of deoxyribonucleot...
Cancer is a disease of uncontrolled cell growth and a major cause of death worldwide. Many molecular...
Mutant p53 (mtp53) is an oncogene that drives cancer cell proliferation. Here we report that mtp53 a...
Mutant p53 (mtp53) is an oncogene that drives cancer cell proliferation. Here we report that mtp53 a...
AbstractNucleotide metabolism supports RNA synthesis and DNA replication to enable cell growth and d...
The maintenance of a healthy deoxyribonucleotide triphosphate (dNTP) pool is critical for the proper...
Nucleotides are required for a wide variety of biological processes and are constantly synthesized d...
Nucleotides are required for a wide variety of bio-logical processes and are constantly synthesized ...
SummaryCancer cells must integrate multiple biosynthetic demands to drive indefinite proliferation. ...
Studies from many laboratories document that the MYC oncogene produces a pleiotropic transcription f...
During the course of tumorigenesis, cells acquire a number of alterations that contribute to the acq...
Proliferation requires that cells acquire sufficient biomass to produce two daughter cells. To accom...
International audienceCancer development involves major alterations in cells' metabolism. Enhanced g...
SummaryChromosomal instability in early cancer stages is caused by stress on DNA replication. The mo...
Tumor cells have devised unique metabolic strategies to garner enough nutrients to sustain continuou...
Cancer cell proliferation and survival are dependent upon on a sufficient supply of deoxyribonucleot...
Cancer is a disease of uncontrolled cell growth and a major cause of death worldwide. Many molecular...
Mutant p53 (mtp53) is an oncogene that drives cancer cell proliferation. Here we report that mtp53 a...
Mutant p53 (mtp53) is an oncogene that drives cancer cell proliferation. Here we report that mtp53 a...
AbstractNucleotide metabolism supports RNA synthesis and DNA replication to enable cell growth and d...
The maintenance of a healthy deoxyribonucleotide triphosphate (dNTP) pool is critical for the proper...
Nucleotides are required for a wide variety of biological processes and are constantly synthesized d...
Nucleotides are required for a wide variety of bio-logical processes and are constantly synthesized ...
SummaryCancer cells must integrate multiple biosynthetic demands to drive indefinite proliferation. ...
Studies from many laboratories document that the MYC oncogene produces a pleiotropic transcription f...
During the course of tumorigenesis, cells acquire a number of alterations that contribute to the acq...
Proliferation requires that cells acquire sufficient biomass to produce two daughter cells. To accom...
International audienceCancer development involves major alterations in cells' metabolism. Enhanced g...
SummaryChromosomal instability in early cancer stages is caused by stress on DNA replication. The mo...
Tumor cells have devised unique metabolic strategies to garner enough nutrients to sustain continuou...