Role of Tet1 in genomic imprinting erasure [RNA-seq]
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Role of Tet1 in genomic imprinting erasure [RNA-seq]
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2013-12-02
相关数据集
TET2 Regulates Mast Cell Differentiation and Proliferation through Catalytic and Non-catalytic Activities.
Dioxygenases of the TET family impact genome functions by converting 5-methylcytosine in DNA to 5-hydroxymethylcytosine (5hmC), but their contribution to differentiation and function of immune cells i
NIAID Data Ecosystem60
RNA-Seq of TET2 uniallelic mutated and wild type CFU colonies from rhesus macaque HSPCs
Gene expression profile of individual CFU-GM colonies identified as uniallelic TET2 mutant versus TET2 wild type was analyzed via RNA-Seq to verify the impact of TET2 editing on gene expression in the
NIAID Data Ecosystem50
Suppl Table S3 from TET2-Dependent Hydroxymethylome Plasticity Reduces Melanoma Initiation and Progression
DhmR and gene expression tet-/- related to Fig3
NIAID Data Ecosystem20
TET2 Regulates Mast Cell Differentiation and Proliferation through Catalytic and Non-catalytic Activities.. Mus musculus
Dioxygenases of the TET family impact genome functions by converting 5-methylcytosine in DNA to 5-hydroxymethylcytosine (5hmC), but their contribution to differentiation and function of immune cells i
NIAID Data Ecosystem50
Loss of TET2 results in gene expression represssion in mouse naïve B-cells and lymphoma cells [RNA-seq]. Loss of TET2 results in gene expression represssion in mouse naïve B-cells and lymphoma cells [RNA-seq]
Absence of Tet2 at mouse cells results in reduced gene expression Overall design: Genome-wide profiling of total RNA transcript levels in mouse cells: TET2 WT and KO naïve B-cells
NIAID Data Ecosystem40



