AbstractE2F transcription factors are thought to influence the G1–S cell-cycle transition by controlling expression of genes required for growth and DNA synthesis. But emerging evidence suggests E2F complexes can control the cell cycle independently of transcription by directly regulating DNA replication origin usage during S phase
Activation of heterodimeric E2F-DP transcription factors can drive the G1-S transition. Mutation of ...
Activation of heterodimeric E2F-DP transcription factors can drive the G1-S transition. Mutation of ...
Endocycles are variant cell cycles comprised of DNA Synthesis (S)- and Gap (G)- phases but lacking m...
E2F transcription factors are thought to influence the G1-S cell-cycle transition by controlling exp...
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...
Initially, the E2F transcription factor was discovered as a factor able to bind the adenovirus E2 pr...
Initially, the E2F transcription factor was discovered as a factor able to bind the adenovirus E2 pr...
Activation of E2F transcription factors is thought to drive the expression of genes essential for th...
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. ...
SummaryE2F transcription factors are key regulators of cell proliferation that are inhibited by pRb ...
AbstractE2F activity is crucial for the G1/S transition and DNA replication in mammalian cells. The ...
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 ...
Activation of heterodimeric E2F-DP transcription factors can drive the G1-S transition. Mutation of ...
Activation of heterodimeric E2F-DP transcription factors can drive the G1-S transition. Mutation of ...
Endocycles are variant cell cycles comprised of DNA Synthesis (S)- and Gap (G)- phases but lacking m...
E2F transcription factors are thought to influence the G1-S cell-cycle transition by controlling exp...
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...
Initially, the E2F transcription factor was discovered as a factor able to bind the adenovirus E2 pr...
Initially, the E2F transcription factor was discovered as a factor able to bind the adenovirus E2 pr...
Activation of E2F transcription factors is thought to drive the expression of genes essential for th...
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. ...
SummaryE2F transcription factors are key regulators of cell proliferation that are inhibited by pRb ...
AbstractE2F activity is crucial for the G1/S transition and DNA replication in mammalian cells. The ...
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 ...
Activation of heterodimeric E2F-DP transcription factors can drive the G1-S transition. Mutation of ...
Activation of heterodimeric E2F-DP transcription factors can drive the G1-S transition. Mutation of ...
Endocycles are variant cell cycles comprised of DNA Synthesis (S)- and Gap (G)- phases but lacking m...