SummaryPrimary mouse embryonic fibroblasts lacking expression of all three retinoblastoma protein family members (TKO MEFs) have lost the G1 restriction point. However, in the absence of mitogens these cells become highly sensitive to apoptosis. Here, we show that TKO MEFs that survive serum depletion pass G1 but completely arrest in G2. p21CIP1 and p27KIP1 inhibit Cyclin A-Cdk2 activity and sequester Cyclin B1-Cdk1 in inactive complexes in the nucleus. This response is alleviated by mitogen restimulation or inactivation of p53. Thus, our results disclose a cell cycle arrest mechanism in G2 that restricts the proliferative capacity of mitogen-deprived cells that have lost the G1 restriction point. The involvement of p53 provides a rationale...
Cell proliferation is dependent on mitogenic signalling. When absent, normal cells cannot pass the G...
Cell proliferation is dependent on mitogenic signalling. When absent, normal cells cannot pass the G...
Loss of G1/S control is a hallmark of cancer, and is often caused by inactivation of the retinoblast...
Primary mouse embryonic fibroblasts lacking expression of all three retinoblastoma protein family me...
Primary mouse embryonic fibroblasts lacking expression of all three retinoblastoma protein family me...
Primary mouse embryonic fibroblasts lacking expression of all three retinoblastoma protein family me...
Primary mouse embryonic fibroblasts lacking expression of all three retinoblastoma protein family me...
Primary mouse embryonic fibroblasts lacking expression of all three retinoblastoma protein family me...
Primary mouse embryonic fibroblasts lacking expression of all three retinoblastoma protein family me...
Primary mouse embryonic fibroblasts lacking expression of all three retinoblastoma protein family me...
Primary mouse embryonic fibroblasts lacking expression of all three retinoblastoma protein family me...
Loss of G1/S control is a hallmark of cancer, and is often caused by inactivation of the retinoblast...
Loss of G1/S control is a hallmark of cancer, and is often caused by inactivation of the retinoblast...
AbstractBackground: The ability of cyclin-dependent kinases (CDKs) to promote cell proliferation is ...
Cell proliferation is dependent on mitogenic signalling. When absent, normal cells cannot pass the G...
Cell proliferation is dependent on mitogenic signalling. When absent, normal cells cannot pass the G...
Cell proliferation is dependent on mitogenic signalling. When absent, normal cells cannot pass the G...
Loss of G1/S control is a hallmark of cancer, and is often caused by inactivation of the retinoblast...
Primary mouse embryonic fibroblasts lacking expression of all three retinoblastoma protein family me...
Primary mouse embryonic fibroblasts lacking expression of all three retinoblastoma protein family me...
Primary mouse embryonic fibroblasts lacking expression of all three retinoblastoma protein family me...
Primary mouse embryonic fibroblasts lacking expression of all three retinoblastoma protein family me...
Primary mouse embryonic fibroblasts lacking expression of all three retinoblastoma protein family me...
Primary mouse embryonic fibroblasts lacking expression of all three retinoblastoma protein family me...
Primary mouse embryonic fibroblasts lacking expression of all three retinoblastoma protein family me...
Primary mouse embryonic fibroblasts lacking expression of all three retinoblastoma protein family me...
Loss of G1/S control is a hallmark of cancer, and is often caused by inactivation of the retinoblast...
Loss of G1/S control is a hallmark of cancer, and is often caused by inactivation of the retinoblast...
AbstractBackground: The ability of cyclin-dependent kinases (CDKs) to promote cell proliferation is ...
Cell proliferation is dependent on mitogenic signalling. When absent, normal cells cannot pass the G...
Cell proliferation is dependent on mitogenic signalling. When absent, normal cells cannot pass the G...
Cell proliferation is dependent on mitogenic signalling. When absent, normal cells cannot pass the G...
Loss of G1/S control is a hallmark of cancer, and is often caused by inactivation of the retinoblast...