Several transcription factors, including the master regulator of the epidermis, p63, are involved in controlling human keratinocyte proliferation and differentiation. Here, we report that in normal keratinocytes, the expression of FOXM1, a member of the Forkhead superfamily of transcription factors, is controlled by p63. We observe that, together with p63, FOXM1 strongly contributes to the maintenance of high proliferative potential in keratinocytes, whereas its expression decreases during differentiation, as well as during replicative-induced senescence. Depletion of FOXM1 is sufficient to induce keratinocyte senescence, paralleled by an increased ROS production and an inhibition of ROS-scavenger genes (SOD2, CAT, GPX2, PRDX). Interestingl...
Aneuploidy, an abnormal chromosome number, has been linked to aging and age-associated diseases, but...
FOXM1 is implicated in genotoxic drug resistance but its mechanism of action remains elusive. We sho...
Tumor cells accumulate high level of reactive oxygen species (ROS) because they are metabolically mo...
Several transcription factors, including the master regulator of the epidermis, p63, are involved in...
FOXM1 transcription factor regulates the expression of a multitude of genes, which are important for...
Sustained expression of FOXM1 is a hallmark of nearly all human cancers including squamous cell carc...
The risk on developing cancer increases with age. Moreover, many processes that affect the onset of ...
FoxM1 is a member of the forkhead family of transcription factors. Since its identification 15 year ...
Cell-cycle arrest in quiescence and senescence is largely orchestrated by the retinoblastoma (Rb) tu...
SummaryCell-cycle arrest in quiescence and senescence is largely orchestrated by the retinoblastoma ...
The signaling pathway of insulin/insulin-like growth factor/phosphatidylinositol-3 kinase/Akt/ forkh...
This is an Open Access article distributed under the terms of the Creative Commons Attribution Licen...
Oncogene-induced senescence (OIS) is a potent tumor-suppressive mechanism that is thought to come at...
SummaryCyclin D-dependent kinases (CDK4 and CDK6) are positive regulators of cell cycle entry and th...
The mammalian Forkhead Box (Fox) transcription factor (FoxM1) is implicated in tumorgenesis. However...
Aneuploidy, an abnormal chromosome number, has been linked to aging and age-associated diseases, but...
FOXM1 is implicated in genotoxic drug resistance but its mechanism of action remains elusive. We sho...
Tumor cells accumulate high level of reactive oxygen species (ROS) because they are metabolically mo...
Several transcription factors, including the master regulator of the epidermis, p63, are involved in...
FOXM1 transcription factor regulates the expression of a multitude of genes, which are important for...
Sustained expression of FOXM1 is a hallmark of nearly all human cancers including squamous cell carc...
The risk on developing cancer increases with age. Moreover, many processes that affect the onset of ...
FoxM1 is a member of the forkhead family of transcription factors. Since its identification 15 year ...
Cell-cycle arrest in quiescence and senescence is largely orchestrated by the retinoblastoma (Rb) tu...
SummaryCell-cycle arrest in quiescence and senescence is largely orchestrated by the retinoblastoma ...
The signaling pathway of insulin/insulin-like growth factor/phosphatidylinositol-3 kinase/Akt/ forkh...
This is an Open Access article distributed under the terms of the Creative Commons Attribution Licen...
Oncogene-induced senescence (OIS) is a potent tumor-suppressive mechanism that is thought to come at...
SummaryCyclin D-dependent kinases (CDK4 and CDK6) are positive regulators of cell cycle entry and th...
The mammalian Forkhead Box (Fox) transcription factor (FoxM1) is implicated in tumorgenesis. However...
Aneuploidy, an abnormal chromosome number, has been linked to aging and age-associated diseases, but...
FOXM1 is implicated in genotoxic drug resistance but its mechanism of action remains elusive. We sho...
Tumor cells accumulate high level of reactive oxygen species (ROS) because they are metabolically mo...