AbstractFunctional maintenance of hematopoietic stem cells (HSCs) is constantly challenged by stresses like DNA damage and oxidative stress. Foxo factors particularly Foxo3a function to regulate the self-renewal of HSCs and contribute to the maintenance of the HSC pool during aging by providing resistance to oxidative stress. Fancd2-deficient mice had multiple hematopoietic defects including HSC loss in early development and in response to cellular stresses including oxidative stress. The cellular mechanisms underlying HSC loss in Fancd2-deficient mice include abnormal cell cycle status loss of quiescence and compromised hematopoietic repopulating capacity of HSCs. To address on a genome wide level the genes and pathways that are impacted b...
AbstractFanconi anemia patients suffer from progressive bone marrow failure. An overactive p53 respo...
Reactive oxygen species (ROS) participate in normal intracellular signalling and in many diseases in...
Fanconi anemia (FA), a genetic disorder due to mutations in one of the FANC complementation group ge...
AbstractFunctional maintenance of hematopoietic stem cells (HSCs) is constantly challenged by stress...
SummaryTo understand the role of FoxO family members in hematopoiesis, we conditionally deleted FoxO...
SummaryHematopoietic stem cells (HSCs) are maintained in an undifferentiated quiescent state within ...
Unchecked accumulation of reactive oxygen species (ROS) compromises maintenance of hematopoietic ste...
The FoxO transcription factors have been implicated in many processes including tumor suppression an...
We combined large-scale mRNA expression analysis and gene mapping to identify genes and loci that co...
The forkhead O (FoxO) family of transcription factors participates in diverse physiologic processes,...
Understanding the molecular regulation of hematopoietic stem and progenitor cell (HSPC) engraftment ...
Identifying physiological roles of specific signaling pathways that regulate hematopoietic stem cell...
SummaryOur mechanistic understanding of Fanconi anemia (FA) pathway function in hematopoietic stem a...
Hematopoietic stem cells (HSCs) maintain themselves throughout life by undergoing self-renewing divi...
AbstractUnderstanding gene regulatory networks controlling properties of pluripotent stem cells will...
AbstractFanconi anemia patients suffer from progressive bone marrow failure. An overactive p53 respo...
Reactive oxygen species (ROS) participate in normal intracellular signalling and in many diseases in...
Fanconi anemia (FA), a genetic disorder due to mutations in one of the FANC complementation group ge...
AbstractFunctional maintenance of hematopoietic stem cells (HSCs) is constantly challenged by stress...
SummaryTo understand the role of FoxO family members in hematopoiesis, we conditionally deleted FoxO...
SummaryHematopoietic stem cells (HSCs) are maintained in an undifferentiated quiescent state within ...
Unchecked accumulation of reactive oxygen species (ROS) compromises maintenance of hematopoietic ste...
The FoxO transcription factors have been implicated in many processes including tumor suppression an...
We combined large-scale mRNA expression analysis and gene mapping to identify genes and loci that co...
The forkhead O (FoxO) family of transcription factors participates in diverse physiologic processes,...
Understanding the molecular regulation of hematopoietic stem and progenitor cell (HSPC) engraftment ...
Identifying physiological roles of specific signaling pathways that regulate hematopoietic stem cell...
SummaryOur mechanistic understanding of Fanconi anemia (FA) pathway function in hematopoietic stem a...
Hematopoietic stem cells (HSCs) maintain themselves throughout life by undergoing self-renewing divi...
AbstractUnderstanding gene regulatory networks controlling properties of pluripotent stem cells will...
AbstractFanconi anemia patients suffer from progressive bone marrow failure. An overactive p53 respo...
Reactive oxygen species (ROS) participate in normal intracellular signalling and in many diseases in...
Fanconi anemia (FA), a genetic disorder due to mutations in one of the FANC complementation group ge...