SummaryCyclin D-dependent kinases (CDK4 and CDK6) are positive regulators of cell cycle entry and they are overactive in the majority of human cancers. However, it is currently not completely understood by which cellular mechanisms CDK4/6 promote tumorigenesis, largely due to the limited number of identified substrates. Here we performed a systematic screen for substrates of cyclin D1-CDK4 and cyclin D3-CDK6. We identified the Forkhead Box M1 (FOXM1) transcription factor as a common critical phosphorylation target. CDK4/6 stabilize and activate FOXM1, thereby maintain expression of G1/S phase genes, suppress the levels of reactive oxygen species (ROS), and protect cancer cells from senescence. Melanoma cells, unlike melanocytes, are highly ...
Senescence is a proliferation arrest that can result from a variety of stresses. Cancer cells can al...
The p16INK4a-Rb tumour suppressor pathway is required for the initiation and maintenance of cellular...
Cyclin-dependent kinases (CDKs) drive cell cycle progression and control transcriptional pro-cesses....
SummaryCyclin D-dependent kinases (CDK4 and CDK6) are positive regulators of cell cycle entry and th...
D-type cyclins (D1, D2 and D3) and their associated cyclin-dependent kinases (CDK4 and CDK6) are com...
Cellular senescence, the stable cell cycle arrest elicited by various forms of stress, is an importa...
International audienceSenescence is a tumor suppressive mechanism that induces a permanent prolifera...
Expression of cyclin D1 is required for cancer cell survival and proliferation. This is presumably d...
The risk on developing cancer increases with age. Moreover, many processes that affect the onset of ...
Oncogene-induced senescence (OIS) is a potent tumor-suppressive mechanism that is thought to come at...
Cellular senescence is a state of stable growth arrest and a desired outcome of tumor suppressive in...
Several transcription factors, including the master regulator of the epidermis, p63, are involved in...
Cyclin-dependent kinases 4 and 6 (CDK4/6) phosphorylate and inhibit retinoblastoma (RB) family prote...
Cyclin-dependent kinase 4 (CDK4) is well-known for its role in regulating the cell cycle, however, i...
CDK4/6 inhibitors are remarkable anti-cancer drugs that can arrest tumor cells in G1 and induce thei...
Senescence is a proliferation arrest that can result from a variety of stresses. Cancer cells can al...
The p16INK4a-Rb tumour suppressor pathway is required for the initiation and maintenance of cellular...
Cyclin-dependent kinases (CDKs) drive cell cycle progression and control transcriptional pro-cesses....
SummaryCyclin D-dependent kinases (CDK4 and CDK6) are positive regulators of cell cycle entry and th...
D-type cyclins (D1, D2 and D3) and their associated cyclin-dependent kinases (CDK4 and CDK6) are com...
Cellular senescence, the stable cell cycle arrest elicited by various forms of stress, is an importa...
International audienceSenescence is a tumor suppressive mechanism that induces a permanent prolifera...
Expression of cyclin D1 is required for cancer cell survival and proliferation. This is presumably d...
The risk on developing cancer increases with age. Moreover, many processes that affect the onset of ...
Oncogene-induced senescence (OIS) is a potent tumor-suppressive mechanism that is thought to come at...
Cellular senescence is a state of stable growth arrest and a desired outcome of tumor suppressive in...
Several transcription factors, including the master regulator of the epidermis, p63, are involved in...
Cyclin-dependent kinases 4 and 6 (CDK4/6) phosphorylate and inhibit retinoblastoma (RB) family prote...
Cyclin-dependent kinase 4 (CDK4) is well-known for its role in regulating the cell cycle, however, i...
CDK4/6 inhibitors are remarkable anti-cancer drugs that can arrest tumor cells in G1 and induce thei...
Senescence is a proliferation arrest that can result from a variety of stresses. Cancer cells can al...
The p16INK4a-Rb tumour suppressor pathway is required for the initiation and maintenance of cellular...
Cyclin-dependent kinases (CDKs) drive cell cycle progression and control transcriptional pro-cesses....