SummaryE2F transcription factors are key regulators of cell proliferation that are inhibited by pRb family tumor suppressors. pRb-independent modes of E2F inhibition have also been described, but their contribution to animal development and tumor suppression is unclear. Here, we show that S phase-specific destruction of Drosophila E2f1 provides a novel mechanism for cell cycle regulation. E2f1 destruction is mediated by a PCNA-interacting-protein (PIP) motif in E2f1 and the Cul4Cdt2 E3 ubiquitin ligase and requires the Dp dimerization partner but not direct Cdk phosphorylation or Rbf1 binding. E2f1 lacking a functional PIP motif accumulates inappropriately during S phase and is more potent than wild-type E2f1 at accelerating cell cycle prog...
E2F transcription factors are thought to influence the G1-S cell-cycle transition by controlling exp...
AbstractThe retinoblastoma tumor suppressor protein (pRb) regulates gene transcription by binding E2...
The initiation and maintenance of G1 cell cycle arrest is a key feature of animal development. In th
E2F transcription factors are key regulators of cell proliferation that are inhibited by pRb family ...
E2F transcription factors are key regulators of cell proliferation that are inhibited by pRb family ...
SummaryE2F transcription factors are key regulators of cell proliferation that are inhibited by pRb ...
Precise control of cell cycle regulators is critical for normal development and tissue homeostasis. ...
Precise control of cell cycle regulators is critical for normal development and tissue homeostasis. ...
<div><p>Precise control of cell cycle regulators is critical for normal development and tissue homeo...
Precise control of cell cycle regulators is critical for normal development and tissue homeostasis. ...
In a paper in this issue of Developmental Cell, Shibutani et al. (2008) uncover the mechanism that u...
Cellular division is primarily controlled at the G1 to S-phase transition of the cell cycle by the r...
Deregulation of the retinoblastoma protein (pRB) pathway is a hallmark of cancer, and in the absence...
E2F transcription factors are thought to influence the G1-S cell-cycle transition by controlling exp...
AbstractE2F transcription factors are thought to influence the G1–S cell-cycle transition by control...
E2F transcription factors are thought to influence the G1-S cell-cycle transition by controlling exp...
AbstractThe retinoblastoma tumor suppressor protein (pRb) regulates gene transcription by binding E2...
The initiation and maintenance of G1 cell cycle arrest is a key feature of animal development. In th
E2F transcription factors are key regulators of cell proliferation that are inhibited by pRb family ...
E2F transcription factors are key regulators of cell proliferation that are inhibited by pRb family ...
SummaryE2F transcription factors are key regulators of cell proliferation that are inhibited by pRb ...
Precise control of cell cycle regulators is critical for normal development and tissue homeostasis. ...
Precise control of cell cycle regulators is critical for normal development and tissue homeostasis. ...
<div><p>Precise control of cell cycle regulators is critical for normal development and tissue homeo...
Precise control of cell cycle regulators is critical for normal development and tissue homeostasis. ...
In a paper in this issue of Developmental Cell, Shibutani et al. (2008) uncover the mechanism that u...
Cellular division is primarily controlled at the G1 to S-phase transition of the cell cycle by the r...
Deregulation of the retinoblastoma protein (pRB) pathway is a hallmark of cancer, and in the absence...
E2F transcription factors are thought to influence the G1-S cell-cycle transition by controlling exp...
AbstractE2F transcription factors are thought to influence the G1–S cell-cycle transition by control...
E2F transcription factors are thought to influence the G1-S cell-cycle transition by controlling exp...
AbstractThe retinoblastoma tumor suppressor protein (pRb) regulates gene transcription by binding E2...
The initiation and maintenance of G1 cell cycle arrest is a key feature of animal development. In th