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OCT4 and SOX2 Work as Transcriptional Activators in Reprogramming Human Fibroblasts
PubMed Full text in PMC Similar studies Analyze with GEO2R
PubMed Full text in PMC Similar studies SRA Run Selector
Transcription factor NKX3-1 is required for reprogramming to pluripotency and can replace OCT4 in mouse and human iPSC induction
PubMed Full text in PMC Similar studies
Transcription factor NKX3-1 is required for reprogramming to pluripotency and can replace OCT4 in mouse and human iPSC induction [ATAC-seq]
Transcription factor NKX3-1 is required for reprogramming to pluripotency and can replace OCT4 in mouse and human iPSC induction [RNA-seq]
Global transcriptome profiling of Oct4/Klf4/Sox2 (3Factor, 3F) + IL6 iPS clones derived from mouse embryonic fibroblasts.
Gene expression profiles of induced pluripotent stem cells (iPSCs) and skin fibroblasts from orangutans
Global gene expression analyses of paused iPSCs
Expression data from iPSCs generated with Yamanaka factors and miR-302 cluster
Excluding Oct4 from Yamanaka cocktail unleashes the developmental potential of iPSCs
The Nuclear Receptor Nr5a2 can replace Oct4 in the Reprogramming of Murine Somatic Cells to Pluripotent Cells
PubMed Similar studies Analyze with GEO2R
Global gene expression analysis of OSKM / N2SKM- infected MEFs over time course
Global gene expression analyses of the Nr5a2 reprogrammed cells
Genome-wide mapping of Nr5a2 in mouse embryonic stem cells
PubMed Similar studies SRA Run Selector
Expression analysis of stepwise induction of iPS cells
Gene expression profiles of OSKH iPSCs, OSK iPSCs and ESC
Direct Reprogramming of Fibroblasts into Epiblast Stem Cells
OSKM induce extraembryonic endoderm stem (iXEN) cells in parallel to iPS cells
An integrated systems biology approach identifies positive cofactor 4 as a pluripotency regulatory factor
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