Geminin Promotes an Epithelial-to-Mesenchymal Transition in an Embryonic Stem Cell Model of Gastrulation
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Title
Geminin Promotes an Epithelial-to-Mesenchymal Transition in an Embryonic Stem Cell Model of Gastrulation
Authors
Keywords
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Journal
STEM CELLS AND DEVELOPMENT
Volume 22, Issue 8, Pages 1177-1189
Publisher
Mary Ann Liebert Inc
Online
2012-12-19
DOI
10.1089/scd.2012.0050
References
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Related references
Note: Only part of the references are listed.- Geminin Is Required for Epithelial to Mesenchymal Transition at Gastrulation
- (2012) Lisa S.D. Emmett et al. STEM CELLS AND DEVELOPMENT
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- Geminin Regulates Cortical Progenitor Proliferation and Differentiation
- (2011) Magda Spella et al. STEM CELLS
- Geminin cooperates with Polycomb to restrain multi-lineage commitment in the early embryo
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- (2010) Keiju Aokage et al. INTERNATIONAL JOURNAL OF CANCER
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- (2010) Michael O. Griffin et al. PHARMACOLOGICAL RESEARCH
- NF-κB and Snail1a coordinate the cell cycle with gastrulation
- (2009) Xiaolin Liu et al. JOURNAL OF CELL BIOLOGY
- Wnt-mediated activation of NeuroD1 and retro-elements during adult neurogenesis
- (2009) Tomoko Kuwabara et al. NATURE NEUROSCIENCE
- Directed induction of anterior and posterior primitive streak by Wnt from embryonic stem cells cultured in a chemically defined serum-free medium
- (2008) Mio Nakanishi et al. FASEB JOURNAL
- Tcf3 is an integral component of the core regulatory circuitry of embryonic stem cells
- (2008) M. F. Cole et al. GENES & DEVELOPMENT
- Snail and Slug Promote Epithelial-Mesenchymal Transition through β-Catenin–T-Cell Factor-4-dependent Expression of Transforming Growth Factor-β3
- (2008) Damian Medici et al. MOLECULAR BIOLOGY OF THE CELL
- Deconstructing stem cell self-renewal: genetic insights into cell-cycle regulation
- (2008) Keith W. Orford et al. NATURE REVIEWS GENETICS
- Snail promotes Wnt target gene expression and interacts with β-catenin
- (2008) V Stemmer et al. ONCOGENE
- Wnt-mediated self-renewal of neural stem/progenitor cells
- (2008) M. Y. S. Kalani et al. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
- T-Cell Factor 3 Regulates Embryonic Stem Cell Pluripotency and Self-Renewal by the Transcriptional Control of Multiple Lineage Pathways
- (2008) Wai-Leong Tam et al. STEM CELLS
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