AbstractThe master regulatory gene Bmi1 modulates key stem cell properties in neural precursor cells (NPCs), and has been implicated in brain tumorigenesis. We previously identified a population of CD133+ brain tumor cells possessing stem cell properties, known as brain tumor initiating cells (BTICs). Here, we characterize the expression and role of Bmi1 in primary minimally cultured human glioblastoma (GBM) patient isolates in CD133+ and CD133− sorted populations. We find that Bmi1 expression is increased in CD133− cells, and Bmi1 protein and transcript expression are highest during intermediate stages of differentiation as CD133+ BTICs lose their CD133 expression. Furthermore, in vitro stem cell assays and Bmi1 knockdown show that Bmi1 co...
BMI1 is known to play a key role in the regulation of stem cell self-renewal in both endogenous and ...
Glioblastoma (GBM) is an aggressive brain tumor whose growth is driven by stemcell-like cells. BMP s...
AbstractThe polycomb gene Bmi-1 is required for the self-renewal of stem cells from diverse tissues,...
AbstractThe master regulatory gene Bmi1 modulates key stem cell properties in neural precursor cells...
Glioblastomas frequently express oncogenic EGFR and loss of the Ink4a/Arf locus. Bmi1, a positive re...
The Polycomb group protein Bmi1 is a key transcriptional regulator of self renewal of embryonic and ...
Cancers are driven by a population of cells with the stem cell properties of self-renewal and unlimi...
Cancers are driven by a population of cells with the stem cell properties of self-renewal and unlimi...
SUMMARY BMI1 is a potent inducer of neural stem cell self-renewal and neural progenitor cell prolife...
SummaryThe Polycomb group and oncogene Bmi1 is required for the proliferation of various differentia...
Cancers are driven by a population of cells with the stem cell properties of self-renewal and unlimi...
Abstract Clinical outcome of children with malignant glioma remains dismal. Here, we e...
Brain tumor-initiating cells (BTICs) are self-renewing multipotent cells critical for tumor maintena...
Cancer is a highly dynamic disease characterized by dedifferentiation, heterogeneity, and plasticity...
AbstractIn recent years, a small number of cells that have stem cell properties were identified in h...
BMI1 is known to play a key role in the regulation of stem cell self-renewal in both endogenous and ...
Glioblastoma (GBM) is an aggressive brain tumor whose growth is driven by stemcell-like cells. BMP s...
AbstractThe polycomb gene Bmi-1 is required for the self-renewal of stem cells from diverse tissues,...
AbstractThe master regulatory gene Bmi1 modulates key stem cell properties in neural precursor cells...
Glioblastomas frequently express oncogenic EGFR and loss of the Ink4a/Arf locus. Bmi1, a positive re...
The Polycomb group protein Bmi1 is a key transcriptional regulator of self renewal of embryonic and ...
Cancers are driven by a population of cells with the stem cell properties of self-renewal and unlimi...
Cancers are driven by a population of cells with the stem cell properties of self-renewal and unlimi...
SUMMARY BMI1 is a potent inducer of neural stem cell self-renewal and neural progenitor cell prolife...
SummaryThe Polycomb group and oncogene Bmi1 is required for the proliferation of various differentia...
Cancers are driven by a population of cells with the stem cell properties of self-renewal and unlimi...
Abstract Clinical outcome of children with malignant glioma remains dismal. Here, we e...
Brain tumor-initiating cells (BTICs) are self-renewing multipotent cells critical for tumor maintena...
Cancer is a highly dynamic disease characterized by dedifferentiation, heterogeneity, and plasticity...
AbstractIn recent years, a small number of cells that have stem cell properties were identified in h...
BMI1 is known to play a key role in the regulation of stem cell self-renewal in both endogenous and ...
Glioblastoma (GBM) is an aggressive brain tumor whose growth is driven by stemcell-like cells. BMP s...
AbstractThe polycomb gene Bmi-1 is required for the self-renewal of stem cells from diverse tissues,...