Overexpression of the transcription factor Spi-1/PU.1 by transgenesis in mice induces a maturation arrest at the proerythroblastic stage of differentiation. We have previously isolated a panel of spi-1 transgenic erythroleukemic cell lines that proliferated in the presence of either erythropoietin (Epo) or stem cell factor (SCF). Using these cell lines, we observed that EpoR stimulation by Epo down-regulated expression of the SCF receptor Kit and induced expression of the Src kinase Lyn. Furthermore, enforced expression of Lyn in the cell lines increased cell proliferation in response to Epo, but reduced cell growth in response to SCF in accordance with Lyn ability to down-regulate Kit expression. Together, the data suggest that Epo-R/Lyn s...
The signaling cascade induced by the interaction of erythropoietin (EPO) with its receptor (EPO-R) i...
textabstractIn this thesis we set out to unravel the components of the EpoR/c-Kit signalling complex...
Stem and progenitor cell fate (self-renewal, proliferation, survival, differentiation) is tightly co...
Erythroid homoeostasis is primarily controlled by Epo (erythropoietin) receptor signalling; however,...
This study examined the impact of the tyrosine kinase Lyn on erythropoietin-induced intracellular si...
Erythropoietin (EPO) stimulates the immature erythroid J2E cell line to terminally di.fferentiate, p...
Erythroid cells terminally differentiate in response to erythropoietin binding its cognate receptor....
We have shown previously that the Src family kinase Lyn is involved in differentiation signals emana...
Lyn is involved in erythropoietin (Epo)-receptor signaling and erythroid homeostasis. Downstream pat...
Many extrinsic and intrinsic factors control the development of red blood cells from committed proge...
Erythropoietin stimulates the immature erythroid J2E cell line to terminally differentiate and maint...
Epo and the EpoR are essential for proliferation and differentiation of committed erythroid progenit...
Erythropoietin (Epo) and thyroid hormone (T3) are key molecules in the development of red blood cell...
Erythropoietin (EPO) and its receptor (EPOR) are required for the development of mature erythrocytes...
Erythropoiesis is controlled principally through erythropoietin (Epo) receptor signaling, which invo...
The signaling cascade induced by the interaction of erythropoietin (EPO) with its receptor (EPO-R) i...
textabstractIn this thesis we set out to unravel the components of the EpoR/c-Kit signalling complex...
Stem and progenitor cell fate (self-renewal, proliferation, survival, differentiation) is tightly co...
Erythroid homoeostasis is primarily controlled by Epo (erythropoietin) receptor signalling; however,...
This study examined the impact of the tyrosine kinase Lyn on erythropoietin-induced intracellular si...
Erythropoietin (EPO) stimulates the immature erythroid J2E cell line to terminally di.fferentiate, p...
Erythroid cells terminally differentiate in response to erythropoietin binding its cognate receptor....
We have shown previously that the Src family kinase Lyn is involved in differentiation signals emana...
Lyn is involved in erythropoietin (Epo)-receptor signaling and erythroid homeostasis. Downstream pat...
Many extrinsic and intrinsic factors control the development of red blood cells from committed proge...
Erythropoietin stimulates the immature erythroid J2E cell line to terminally differentiate and maint...
Epo and the EpoR are essential for proliferation and differentiation of committed erythroid progenit...
Erythropoietin (Epo) and thyroid hormone (T3) are key molecules in the development of red blood cell...
Erythropoietin (EPO) and its receptor (EPOR) are required for the development of mature erythrocytes...
Erythropoiesis is controlled principally through erythropoietin (Epo) receptor signaling, which invo...
The signaling cascade induced by the interaction of erythropoietin (EPO) with its receptor (EPO-R) i...
textabstractIn this thesis we set out to unravel the components of the EpoR/c-Kit signalling complex...
Stem and progenitor cell fate (self-renewal, proliferation, survival, differentiation) is tightly co...