AbstractDisruption of the cyclin-dependent kinase–inhibitory domain of p27 enhances growth of mice. Growth is attributed to an increase in cell number, due to increased cell proliferation, most obviously in tissues that ordinarily express p27 at the highest levels. Disruption of p27 function leads to nodular hyperplasia in the intermediate lobe of the pituitary. However, increased growth occurs without an increase in the amounts of either growth hormone or IGF-I. In addition, female mice were infertile. Luteal cell differentiation is impaired, and a disordered estrus cycle is detected. These results reflect a disturbance of the hypothalamic–pituitary–ovarian axis. The phenotypes of these mice suggest that loss of p27 causes an alteration in...
The presence of two families of seven distinct mammalian cyclin-dependent kinase (CDK) inhibitor gen...
AbstractTargeted disruption of the murine p27Kip1 gene caused a gene dose–dependent increase in anim...
<div><p>The CDK inhibitor p27<sup>kip1</sup> is a critical regulator of cell cycle progression, but ...
AbstractDisruption of the cyclin-dependent kinase–inhibitory domain of p27 enhances growth of mice. ...
AbstractMice lacking p27Kip1 have been created by gene targeting in embryonic stem cells. These mice...
AbstractTargeted disruption of the murine p27Kip1 gene caused a gene dose–dependent increase in anim...
Loss of the cyclin-dependent kinase inhibitor p27Kip1 leads to an overall increase in animal growth,...
AbstractMice lacking p27Kip1 have been created by gene targeting in embryonic stem cells. These mice...
AbstractBackground: The ability of cyclin-dependent kinases (CDKs) to promote cell proliferation is ...
D-type cyclins (cyclins D1, D2, and D3) are key components of cell cycle machinery in mammalian cell...
AbstractThis in vivo study employs p27-deficient mice to investigate the significance of p27 for the...
p27Kip1, a cyclin-cdk inhibitor, is a tumor suppressor. An overwhelming amount of data correlate p27...
The cell cycle of cultured cells appears to be regulated by opposing actions of the cyclins together...
The presence of two families of seven distinct mammalian cyclin-dependent kinase (CDK) inhibitor gen...
AbstractThis in vivo study employs p27-deficient mice to investigate the significance of p27 for the...
The presence of two families of seven distinct mammalian cyclin-dependent kinase (CDK) inhibitor gen...
AbstractTargeted disruption of the murine p27Kip1 gene caused a gene dose–dependent increase in anim...
<div><p>The CDK inhibitor p27<sup>kip1</sup> is a critical regulator of cell cycle progression, but ...
AbstractDisruption of the cyclin-dependent kinase–inhibitory domain of p27 enhances growth of mice. ...
AbstractMice lacking p27Kip1 have been created by gene targeting in embryonic stem cells. These mice...
AbstractTargeted disruption of the murine p27Kip1 gene caused a gene dose–dependent increase in anim...
Loss of the cyclin-dependent kinase inhibitor p27Kip1 leads to an overall increase in animal growth,...
AbstractMice lacking p27Kip1 have been created by gene targeting in embryonic stem cells. These mice...
AbstractBackground: The ability of cyclin-dependent kinases (CDKs) to promote cell proliferation is ...
D-type cyclins (cyclins D1, D2, and D3) are key components of cell cycle machinery in mammalian cell...
AbstractThis in vivo study employs p27-deficient mice to investigate the significance of p27 for the...
p27Kip1, a cyclin-cdk inhibitor, is a tumor suppressor. An overwhelming amount of data correlate p27...
The cell cycle of cultured cells appears to be regulated by opposing actions of the cyclins together...
The presence of two families of seven distinct mammalian cyclin-dependent kinase (CDK) inhibitor gen...
AbstractThis in vivo study employs p27-deficient mice to investigate the significance of p27 for the...
The presence of two families of seven distinct mammalian cyclin-dependent kinase (CDK) inhibitor gen...
AbstractTargeted disruption of the murine p27Kip1 gene caused a gene dose–dependent increase in anim...
<div><p>The CDK inhibitor p27<sup>kip1</sup> is a critical regulator of cell cycle progression, but ...