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Kollarovic2016 - Cell fate decision at G1-S transition This model is described in the article: To senesce or not to senesce: how primary human fibroblasts decide their cell fate after DNA damage. Kollarovic G, Studencka M, Ivanova L, Lauenstein C, Heinze K, Lapytsko A, Talem...
2024-09-02 | BIOMD0000000632 | BioModels
The p53 transcription factor is a regulator of key cellular processes including DNA repair, cell cycle arrest, and apoptosis. In this theoretical study, we investigate how the complex circuitry of the p53 network allows for stochastic yet unambiguous cell fate decision-making. The proposed Markov ch...
2024-09-02 | BIOMD0000000943 | BioModels
Understanding how distinct cell types arise from common multipotent progenitor cells is a major quest in stem cell biology. This knowledge will aid in the targeted differentiation and growth of stem cells, but also in the discovery of the basis of cellular plasticity and of how tissue programming ca...
ORGANISM(S): Mus musculus 
Stepwise cell fate decision pathways during osteoclastogenesis at single-cell resolution
Arid3a, a transcription factor known for its requirement in B-lymphocyte development, has been recently identified as a member of ES cell pluripotency network. Arid3a is moderately expressed in ES cells, and its expression is gradually increased during differentiation. Since Arid3a shows the highest...
ORGANISM(S): Mus musculus 
It remains an open question when and how the first cell fate decision is made in mammals. Using deep single-cell RNA-seq of matched sister blastomeres, we report highly reproducible interblastomere differences among ten 2-cell and five 4-cell mouse embryos. Inter-blastomere gene expression differenc...
ORGANISM(S): Mus musculus 
Cell fate decision by a morphogen-transcription factor-chromatin modifier axis
Telomere Shortening Impairs PGC Fate Decision [RNA-seq]
Telomere Shortening Impairs PGC Fate Decision [ATAC-seq]
Cell competition regulates the fate decision of neural stem cells
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