The forkhead O (FoxO) family of transcription factors participates in diverse physiologic processes, including induction of cell-cycle arrest, stress resistance, differentiation, apoptosis, and metabolism. Several recent studies indicate that FoxO-dependent signaling is required for long-term regenerative potential of the hematopoietic stem cell (HSC) compartment through regulation of HSC response to physiologic oxidative stress, quiescence, and survival. These observations link FoxO function in mammalian systems with the evolutionarily conserved role of FoxO in promotion of stress resistance and longevity in lower phylogenetic systems. Furthermore, these findings have implications for aging in higher organisms and in malignant stem cell bi...
FOXO (Forkhead box, class O) proteins are transcriptional regulators ubiquitously expressed in mamma...
Copyright © 2014 Yu Wang et al.This is an open access article distributed under the Creative Commons...
Tissue/organ regenerative capacity varies among different species. The more complex organisms (such ...
The forkhead O (FoxO) family of transcription factors participates in diverse physiologic processes,...
SummaryTo understand the role of FoxO family members in hematopoiesis, we conditionally deleted FoxO...
Two main components of the hematopoietic niche are hematopoietic stem cells (HSCs) and mesenchymal s...
The FoxO transcription factors have been implicated in many processes including tumor suppression an...
SummaryHematopoietic stem cells (HSCs) are maintained in an undifferentiated quiescent state within ...
Members of the class O of forkhead box transcription factors (FOXO) have important roles in metaboli...
Unchecked accumulation of reactive oxygen species (ROS) compromises maintenance of hematopoietic ste...
Metabolic adaptation to environmental alterations is fundamental for long term survival of the organ...
SummaryIn the nervous system, neural stem cells (NSCs) are necessary for the generation of new neuro...
SummaryThe PI3K-AKT-FoxO pathway is integral to lifespan regulation in lower organisms and essential...
FOXO transcription factors are involved in a variety of biological processes including cell cycle re...
The PI3K-AKT-FoxO pathway is integral to lifespan regulation in lower organisms and essential for th...
FOXO (Forkhead box, class O) proteins are transcriptional regulators ubiquitously expressed in mamma...
Copyright © 2014 Yu Wang et al.This is an open access article distributed under the Creative Commons...
Tissue/organ regenerative capacity varies among different species. The more complex organisms (such ...
The forkhead O (FoxO) family of transcription factors participates in diverse physiologic processes,...
SummaryTo understand the role of FoxO family members in hematopoiesis, we conditionally deleted FoxO...
Two main components of the hematopoietic niche are hematopoietic stem cells (HSCs) and mesenchymal s...
The FoxO transcription factors have been implicated in many processes including tumor suppression an...
SummaryHematopoietic stem cells (HSCs) are maintained in an undifferentiated quiescent state within ...
Members of the class O of forkhead box transcription factors (FOXO) have important roles in metaboli...
Unchecked accumulation of reactive oxygen species (ROS) compromises maintenance of hematopoietic ste...
Metabolic adaptation to environmental alterations is fundamental for long term survival of the organ...
SummaryIn the nervous system, neural stem cells (NSCs) are necessary for the generation of new neuro...
SummaryThe PI3K-AKT-FoxO pathway is integral to lifespan regulation in lower organisms and essential...
FOXO transcription factors are involved in a variety of biological processes including cell cycle re...
The PI3K-AKT-FoxO pathway is integral to lifespan regulation in lower organisms and essential for th...
FOXO (Forkhead box, class O) proteins are transcriptional regulators ubiquitously expressed in mamma...
Copyright © 2014 Yu Wang et al.This is an open access article distributed under the Creative Commons...
Tissue/organ regenerative capacity varies among different species. The more complex organisms (such ...