AbstractBackground: The onset of differentiation-specific gene expression in skeletal muscle is coupled to permanent withdrawal from the cell cycle. The retinoblastoma tumor-suppressor protein (pRb) is a critical regulator of this process, required for both cell-cycle arrest in G0 phase and high-level expression of late muscle-differentiation markers. Although the cell-cycle defects that are seen in pRb-deficient myocytes can be explained by the well-described function of pRb as a negative regulator of the transition from G1 to S phase, it remains unclear how pRb positively affects late muscle-gene expression.Results: Here, we show that the myogenic defect in Rb−/− cells corresponds to a deficiency in the activity of the transcription facto...
The retinoblastoma protein (pRB) is best known for regulating cell proliferation through E2F transcr...
The retinoblastoma protein (pRB) is best known for regulating cell proliferation through E2F transcr...
Withdrawal from the cell cycle of differentiating myocytes is regulated by the myogenic basic helix-...
AbstractBackground: The onset of differentiation-specific gene expression in skeletal muscle is coup...
Viral oncoproteins that inactivate the retinoblastoma tumor suppressor protein (pRb) family both blo...
AbstractDuring skeletal muscle differentiation, a subset of myoblasts remains quiescent and undiffer...
The molecular orchestration of skeletal muscle differentiation is a concerted process involving musc...
The retinoblastoma tumor suppressor (pRb) is thought to orchestrate terminal differentiation by inhi...
Skeletal muscle differentiation entails the coordination of muscle-specific gene expression and term...
AbstractQuiescent stem cells contribute to tissue homeostasis and repair in adult mammals. We identi...
Retinoblastoma protein (pRb) is expressed virtually in all cell types with the main purpose of cell ...
The MEF2 family of transcription factors (MEF2A, MEF2C, and MEF2D) are crucial during skeletal muscl...
Cell cycle arrest is critical for muscle differentiation, and the two processes are closely coordina...
Quiescent stem cells contribute to tissue homeostasis and repair in adult mammals. We identified a t...
The Positive Regulatory Domain (PRDM) protein family gene is involved in a spectrum variety of biolo...
The retinoblastoma protein (pRB) is best known for regulating cell proliferation through E2F transcr...
The retinoblastoma protein (pRB) is best known for regulating cell proliferation through E2F transcr...
Withdrawal from the cell cycle of differentiating myocytes is regulated by the myogenic basic helix-...
AbstractBackground: The onset of differentiation-specific gene expression in skeletal muscle is coup...
Viral oncoproteins that inactivate the retinoblastoma tumor suppressor protein (pRb) family both blo...
AbstractDuring skeletal muscle differentiation, a subset of myoblasts remains quiescent and undiffer...
The molecular orchestration of skeletal muscle differentiation is a concerted process involving musc...
The retinoblastoma tumor suppressor (pRb) is thought to orchestrate terminal differentiation by inhi...
Skeletal muscle differentiation entails the coordination of muscle-specific gene expression and term...
AbstractQuiescent stem cells contribute to tissue homeostasis and repair in adult mammals. We identi...
Retinoblastoma protein (pRb) is expressed virtually in all cell types with the main purpose of cell ...
The MEF2 family of transcription factors (MEF2A, MEF2C, and MEF2D) are crucial during skeletal muscl...
Cell cycle arrest is critical for muscle differentiation, and the two processes are closely coordina...
Quiescent stem cells contribute to tissue homeostasis and repair in adult mammals. We identified a t...
The Positive Regulatory Domain (PRDM) protein family gene is involved in a spectrum variety of biolo...
The retinoblastoma protein (pRB) is best known for regulating cell proliferation through E2F transcr...
The retinoblastoma protein (pRB) is best known for regulating cell proliferation through E2F transcr...
Withdrawal from the cell cycle of differentiating myocytes is regulated by the myogenic basic helix-...