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PRDM family members are sequence-specific transcriptional regulators involved in cell identity and fate determination and are often dysregulated in cancer. The PRDM15 gene is of particular interest, given its relatively low expression in adult tissues and its overexpression in follicular lymphomas (...
2025-06-16 | MTBLS1639 | MetaboLights
Cell fate plasticity enables development, yet unlocked plasticity is a cancer hallmark. Regulating cell identity requires gene activation and repression. While master regulators induce lineage-specific genes to restrict plasticity, it remains unclear whether unwanted plasticity is actively suppresse...
ORGANISM(S): Mus musculus (Mouse) 
2024-11-11 | PXD053043 | Pride

Spermatogonial stem cells (SSCs) possess the capacity for spontaneous reprogramming during in vitro culture, while the underlying mechanisms remain poorly understood, especially why addition of epidermal growth factor (EGF), leukemia inhibitory factor (LIF) remarkably enhanced transition efficien...

2025-07-08 | MTBLS12698 | MetaboLights
Hnrnpa21 regulates myogenic fate plasticity
Carbo2013 - Cytokine driven CD4+ T Cell differentiation and phenotype plasticity CD4+ T cells can differentiate into different phenotypes depending on the cytokine milieu. Here a computational and mathematical model with sixty ordinary differential equations representing a CD4+ T ...
2024-09-02 | BIOMD0000000451 | BioModels
Fate plasticity of interneuron specification
IRAK4 constrains cellular plasticity during chemically-induced cell fate reprogramming into multiple lineages
Active repression of cell fate plasticity by PROX1 safeguards hepatocyte identity and prevents liver tumorigenesis [PROX1 OE Hep3B RNA-seq]
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