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Somatic haploidization using mature oocytes in mice
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2022-01-03
相关数据集
Heterochromatin lossening by Oct4 in somatic cell reprogramming
The success of Yamanaka factor reprogramming mouse embryonic fibroblasts (MEFs) into induced pluripotent stem cells (iPSCs) suggests that some factor(s) must remodel the nuclei from a condensed state
NIAID Data Ecosystem80
Mus musculus Raw sequence reads
NAC1 regulates somatic cell reprogramming by controlling E-cadherin expression.Null hNAC1 (S2)
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Genes regulated by Gadd45a during somatic cell reprogramming. Mus musculus
Gadd45a can enhance somatic cell reprogramming significantly. To explore the roles of Gadd45a playing in reprogramming, we performed whole genome microarray to identify genes and signals pathways that
NIAID Data Ecosystem40
Global Regulatory Network Controlling Human Somatic Cell Reprogramming [SMAD3 and SFRS11 Knockdown]. Homo sapiens
This is the first study deciphering the global regulatory network that drives human somatic cells during epigenetic rewiring towards the pluripotent state. Overall design: Examination of the Transcrip
NIAID Data Ecosystem70
AP-1 is a temporally regulated dual gatekeeper of reprogramming to pluripotency (ATAC-Seq). AP-1 is a temporally regulated dual gatekeeper of reprogramming to pluripotency (ATAC-Seq)
Somatic cell transcription factors are critical to maintaining cellular identity and constitute a barrier to human somatic cell reprogramming, yet a comprehensive understanding of the mechanism of act
NIAID Data Ecosystem40



