PI-PLCbeta1 plays an important role in cell differentiation, and particularly in myogenesis, osteogenesis and hematopoiesis. Indeed, the increase of PI-PLCbeta1, along with Cyclin D3, has been detected in C2C12 mouse myoblasts induced to differentiate, as well as in human cells obtained from myotonic dystrophy. Also in the case of osteogenic differentiation there is a specific induction of PI-PLCbeta1, but in this case the role of PI-PLCbeta1 seems to be independent from Cyclin D3, so that a different mechanism could be involved. As for the hematopoietic system, PI-PLCbeta1 has a peculiar behavior: it increases during myeloid differentiation and decreases during erythroid differentiation, thus confirming the role of PI-PLCbeta1 as a modulat...
Myelodysplastic syndromes (MDS), clonal hematopoietic stem-cell disorders mainly affecting older adu...
he existence of an independent nuclear inositide pathway distinct from the cytoplasmic one has been ...
Phosphoinositide-phospholipase C (PI-PLC) beta1 can be considered a specific target for demethylatin...
PI-PLCbeta1 plays an important role in cell differentiation, and particularly in myogenesis, osteoge...
Nuclear phosphoinositide-phospholipase C (PI-PLC) beta1 plays a crucial role in the molecular steps ...
The existence of an independent nuclear inositide pathway distinct from the cytoplasmic one has been...
Phosphoinositide-phospholipase C-β1 (PLC-β1) plays a crucial role in the initiation of the genetic p...
Phospholipase Cβ1 (PLCβ1) signaling in both cell proliferation and differentiation has been largely ...
Phospholipase C beta(1) (PLCbeta(1)) signaling in both cell proliferation and differentiation has be...
Phosphoinositide-phospholipase C-??1 (PLC-??1) plays a crucial role in the initiation of the genetic...
Phosphoinositide-phospholipase C β1 (PLCβ1) plays a crucial role in the initiation of the genetic pr...
A phosphoinositide signalling cycle is present in the nucleus, independent of that which occurs at t...
none8noThe existence of an inositide-dependent nuclear signaling has been clearly shown. In this rev...
Inositol lipids are key regulators of several cellular functions. The identification of an independe...
Among cellular second messengers inositides play key roles in signal transduction pathways. Indeed, ...
Myelodysplastic syndromes (MDS), clonal hematopoietic stem-cell disorders mainly affecting older adu...
he existence of an independent nuclear inositide pathway distinct from the cytoplasmic one has been ...
Phosphoinositide-phospholipase C (PI-PLC) beta1 can be considered a specific target for demethylatin...
PI-PLCbeta1 plays an important role in cell differentiation, and particularly in myogenesis, osteoge...
Nuclear phosphoinositide-phospholipase C (PI-PLC) beta1 plays a crucial role in the molecular steps ...
The existence of an independent nuclear inositide pathway distinct from the cytoplasmic one has been...
Phosphoinositide-phospholipase C-β1 (PLC-β1) plays a crucial role in the initiation of the genetic p...
Phospholipase Cβ1 (PLCβ1) signaling in both cell proliferation and differentiation has been largely ...
Phospholipase C beta(1) (PLCbeta(1)) signaling in both cell proliferation and differentiation has be...
Phosphoinositide-phospholipase C-??1 (PLC-??1) plays a crucial role in the initiation of the genetic...
Phosphoinositide-phospholipase C β1 (PLCβ1) plays a crucial role in the initiation of the genetic pr...
A phosphoinositide signalling cycle is present in the nucleus, independent of that which occurs at t...
none8noThe existence of an inositide-dependent nuclear signaling has been clearly shown. In this rev...
Inositol lipids are key regulators of several cellular functions. The identification of an independe...
Among cellular second messengers inositides play key roles in signal transduction pathways. Indeed, ...
Myelodysplastic syndromes (MDS), clonal hematopoietic stem-cell disorders mainly affecting older adu...
he existence of an independent nuclear inositide pathway distinct from the cytoplasmic one has been ...
Phosphoinositide-phospholipase C (PI-PLC) beta1 can be considered a specific target for demethylatin...