MicroRNAs are critical post-transcriptional regulators of hematopoietic cell-fate decisions, though little remains known about their role in aging hematopoietic stem cells (HSCs). We found that the microRNA-212/132 cluster (Mirc19) is enriched in HSCs and is upregulated during aging. Both overexpression and deletion of microRNAs in this cluster leads to inappropriate hematopoiesis with age. Enforced expression of miR-132 in the bone marrow of mice led to rapid HSC cycling and depletion. A genetic deletion of Mirc19 in mice resulted in HSCs that had altered cycling, function, and survival in response to growth factor starvation. We found that miR-132 exerted its effect on aging HSCs by targeting the transcription factor FOXO3, a known aging ...
Throughout life, hematopoietic stem cells (HSCs), residing in bone marrow (BM), continuously regener...
Human aging is associated with a decrease in tissue functions combined with a decline in stem cells ...
Hematopoietic stem/progenitor cell (HSPC) traits differ between genetically distinct mouse strains. ...
SummaryMicroRNAs are critical post-transcriptional regulators of hematopoietic cell-fate decisions, ...
MicroRNAs are critical post-transcriptional regulators of hematopoietic cell-fate decisions, though ...
The preservation of hematopoieticstem cell pool in bone marrow (BM) is crucial for sustained hemato...
MicroRNAs are critical post-transcriptional regulators of hematopoietic cell-fate decisions, though ...
The functional decline that is observed in HSCs upon aging is attributed mainly to cell intrinsic fa...
Aging is a biological process determined through time-related cellular and functional impairments, l...
MicroRNAs are a class of small non-coding RNAs that negatively regulate gene expression. Several mic...
Hematopoietic stem cells (HSCs) are the adult stem cells in the bone marrow that are responsible for...
SummaryThe capacity of hematopoietic stem cells (HSC) to generate B lymphocytes declines with age, c...
Age-related defects in stem cells can limit proper tissue maintenance and hence contribute to a shor...
The blood is composed of many different cell types that through tightly regulated mechanisms are der...
Human aging is associated with a decrease in tissue functions combined with a decline in stem cells ...
Throughout life, hematopoietic stem cells (HSCs), residing in bone marrow (BM), continuously regener...
Human aging is associated with a decrease in tissue functions combined with a decline in stem cells ...
Hematopoietic stem/progenitor cell (HSPC) traits differ between genetically distinct mouse strains. ...
SummaryMicroRNAs are critical post-transcriptional regulators of hematopoietic cell-fate decisions, ...
MicroRNAs are critical post-transcriptional regulators of hematopoietic cell-fate decisions, though ...
The preservation of hematopoieticstem cell pool in bone marrow (BM) is crucial for sustained hemato...
MicroRNAs are critical post-transcriptional regulators of hematopoietic cell-fate decisions, though ...
The functional decline that is observed in HSCs upon aging is attributed mainly to cell intrinsic fa...
Aging is a biological process determined through time-related cellular and functional impairments, l...
MicroRNAs are a class of small non-coding RNAs that negatively regulate gene expression. Several mic...
Hematopoietic stem cells (HSCs) are the adult stem cells in the bone marrow that are responsible for...
SummaryThe capacity of hematopoietic stem cells (HSC) to generate B lymphocytes declines with age, c...
Age-related defects in stem cells can limit proper tissue maintenance and hence contribute to a shor...
The blood is composed of many different cell types that through tightly regulated mechanisms are der...
Human aging is associated with a decrease in tissue functions combined with a decline in stem cells ...
Throughout life, hematopoietic stem cells (HSCs), residing in bone marrow (BM), continuously regener...
Human aging is associated with a decrease in tissue functions combined with a decline in stem cells ...
Hematopoietic stem/progenitor cell (HSPC) traits differ between genetically distinct mouse strains. ...