SummaryGeminin is an essential cell-cycle protein that is only present from S phase to early mitosis in metazoan somatic cells [1, 2]. Genetic ablation of geminin in the mouse results in preimplantation embryonic lethality because pluripotent cells fail to form and all cells differentiate to trophoblast [3, 4]. Here we show that geminin is present in G1 phase of mouse pluripotent cells in contrast to somatic cells, where anaphase-promoting complex/cyclosome (APC/C)-mediated proteasomal destruction removes geminin in G1 [1, 2, 5]. Silencing geminin directly or by depleting the APC/C inhibitor Emi1 causes loss of stem cell identity and trophoblast differentiation of mouse embryonal carcinoma and embryonic stem cells. Depletion of cyclins A2 o...
AbstractSpermatogonial stem cells divide throughout life, maintaining their own population and givin...
AbstractWe describe a novel 25 kDa protein, geminin, which inhibits DNA replication and is degraded ...
© 2010 Landes BioscienceThe interplay of proliferation and differentiation is essential for normal d...
SummaryGeminin is an essential cell-cycle protein that is only present from S phase to early mitosis...
Pluripotent mouse embryonic stem cells (ESCs) are in vitro derivatives of the early mouse embryo. Th...
AbstractGeminin is a protein involved in both DNA replication and cell fate acquisition. Although it...
<div><p>Pluripotency requires the expression of the three core transcriptions factors Oct4, Sox2 and...
Pluripotency requires the expression of the three core transcriptions factors Oct4, Sox2 and Nanog, ...
Pluripotency requires the expression of the three core transcriptions factors Oct4, Sox2 and Nanog, ...
Pluripotency requires the expression of the three core transcriptions factors Oct4, Sox2 and Nanog, ...
AbstractGeminin is a protein involved in both DNA replication and cell fate acquisition. Although it...
Embryonic cells utilize both growth factor signaling and cell intrinsic transcriptional and epigenet...
Embryonic cells utilize both growth factor signaling and cell intrinsic transcriptional and epigenet...
<div><p>Geminin regulates chromatin remodeling and DNA replication licensing which play an important...
Geminin regulates chromatin remodeling and DNA replication licensing which play an important role in...
AbstractSpermatogonial stem cells divide throughout life, maintaining their own population and givin...
AbstractWe describe a novel 25 kDa protein, geminin, which inhibits DNA replication and is degraded ...
© 2010 Landes BioscienceThe interplay of proliferation and differentiation is essential for normal d...
SummaryGeminin is an essential cell-cycle protein that is only present from S phase to early mitosis...
Pluripotent mouse embryonic stem cells (ESCs) are in vitro derivatives of the early mouse embryo. Th...
AbstractGeminin is a protein involved in both DNA replication and cell fate acquisition. Although it...
<div><p>Pluripotency requires the expression of the three core transcriptions factors Oct4, Sox2 and...
Pluripotency requires the expression of the three core transcriptions factors Oct4, Sox2 and Nanog, ...
Pluripotency requires the expression of the three core transcriptions factors Oct4, Sox2 and Nanog, ...
Pluripotency requires the expression of the three core transcriptions factors Oct4, Sox2 and Nanog, ...
AbstractGeminin is a protein involved in both DNA replication and cell fate acquisition. Although it...
Embryonic cells utilize both growth factor signaling and cell intrinsic transcriptional and epigenet...
Embryonic cells utilize both growth factor signaling and cell intrinsic transcriptional and epigenet...
<div><p>Geminin regulates chromatin remodeling and DNA replication licensing which play an important...
Geminin regulates chromatin remodeling and DNA replication licensing which play an important role in...
AbstractSpermatogonial stem cells divide throughout life, maintaining their own population and givin...
AbstractWe describe a novel 25 kDa protein, geminin, which inhibits DNA replication and is degraded ...
© 2010 Landes BioscienceThe interplay of proliferation and differentiation is essential for normal d...