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Search results 1 to 100 out of 387 for Tet3

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0.044s
Type Details Score
Gene
Type: gene
Organism: human
Gene
Type: gene
Organism: chicken
Gene
Type: gene
Organism: macaque, rhesus
Gene
Type: gene
Organism: cattle
Gene
Type: gene
Organism: zebrafish
Gene
Type: gene
Organism: frog, western clawed
Gene
Type: gene
Organism: rat
Gene
Type: gene
Organism: dog, domestic
Gene
Type: gene
Organism: chimpanzee
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
GXD Expression
Probe: MGI:7482723
Assay Type: Immunohistochemistry
Annotation Date: 2023-05-22
Strength: Present
Sex: Not Specified
Emaps: EMAPS:160331
Pattern: Regionally restricted
Stage: TS01
Assay Id: MGI:7482811
Age: embryonic day 0.5
Image: S7a TET3 WT
Note: Small but detectable amount of expression in female pronucleus, compared to much higher level of expression in male pronucleus.
Specimen Label: S7a TET3 WT
Detected: true
Specimen Num: 1
GXD Expression
Probe: MGI:7482723
Assay Type: Immunohistochemistry
Annotation Date: 2023-05-22
Strength: Weak
Sex: Not Specified
Emaps: EMAPS:160331
Pattern: Regionally restricted
Stage: TS01
Assay Id: MGI:7482811
Age: embryonic day 0.5
Image: S7a TET3 R60A/-
Note: Significantly decreased in level of expression in both pronuclei.
Specimen Label: S7a TET3 R60A/-
Detected: true
Specimen Num: 2
GXD Expression
Probe: MGI:7482723
Assay Type: Immunohistochemistry
Annotation Date: 2023-05-22
Strength: Present
Sex: Not Specified
Emaps: EMAPS:160331
Pattern: Regionally restricted
Stage: TS01
Assay Id: MGI:7482811
Age: embryonic day 0.5
Image: S7a TET3 -/-
Note: Small but detectable amount of expression in female pronucleus, compared to much higher level of expression in male pronucleus.
Specimen Label: S7a TET3 -/-
Detected: true
Specimen Num: 3
Publication
First Author: Liu N
Year: 2013
Journal: PLoS One
Title: Intrinsic and extrinsic connections of Tet3 dioxygenase with CXXC zinc finger modules.
Volume: 8
Issue: 5
Pages: e62755
Publication
First Author: Gu TP
Year: 2011
Journal: Nature
Title: The role of Tet3 DNA dioxygenase in epigenetic reprogramming by oocytes.
Volume: 477
Issue: 7366
Pages: 606-10
Publication
First Author: Xue S
Year: 2016
Journal: Cell Rep
Title: TET3 Inhibits Type I IFN Production Independent of DNA Demethylation.
Volume: 16
Issue: 4
Pages: 1096-1105
Publication
First Author: Chen B
Year: 2022
Journal: Nature
Title: Maternal inheritance of glucose intolerance via oocyte TET3 insufficiency.
Volume: 605
Issue: 7911
Pages: 761-766
Publication
First Author: Deplus R
Year: 2013
Journal: EMBO J
Title: TET2 and TET3 regulate GlcNAcylation and H3K4 methylation through OGT and SET1/COMPASS.
Volume: 32
Issue: 5
Pages: 645-55
Publication
First Author: Jung BC
Year: 2023
Journal: Cell Rep
Title: TET3 plays a critical role in white adipose development and diet-induced remodeling.
Volume: 42
Issue: 10
Pages: 113196
Publication
First Author: Xiao P
Year: 2013
Journal: Biochem Biophys Res Commun
Title: Characterization of the nuclear localization signal of the mouse TET3 protein.
Volume: 439
Issue: 3
Pages: 373-7
Publication
First Author: Yu H
Year: 2015
Journal: Nat Neurosci
Title: Tet3 regulates synaptic transmission and homeostatic plasticity via DNA oxidation and repair.
Volume: 18
Issue: 6
Pages: 836-43
Publication
First Author: Da Li
Year: 2020
Journal: Nat Commun
Title: Hepatic TET3 contributes to type-2 diabetes by inducing the HNF4α fetal isoform.
Volume: 11
Issue: 1
Pages: 342
Publication
First Author: Inoue A
Year: 2015
Journal: Cell Rep
Title: Haploinsufficiency, but not defective paternal 5mC oxidation, accounts for the developmental defects of maternal Tet3 knockouts.
Volume: 10
Issue: 4
Pages: 463-70
Publication
First Author: Montalbán-Loro R
Year: 2019
Journal: Nat Commun
Title: TET3 prevents terminal differentiation of adult NSCs by a non-catalytic action at Snrpn.
Volume: 10
Issue: 1
Pages: 1726
Publication
First Author: Shen L
Year: 2014
Journal: Cell Stem Cell
Title: Tet3 and DNA replication mediate demethylation of both the maternal and paternal genomes in mouse zygotes.
Volume: 15
Issue: 4
Pages: 459-471
Publication
First Author: Yue X
Year: 2019
Journal: Nat Commun
Title: Loss of TET2 and TET3 in regulatory T cells unleashes effector function.
Volume: 10
Issue: 1
Pages: 2011
Publication  
First Author: Tsukada Y
Year: 2015
Journal: Sci Rep
Title: Maternal TET3 is dispensable for embryonic development but is required for neonatal growth.
Volume: 5
Pages: 15876
Publication
First Author: Lv X
Year: 2014
Journal: EMBO Rep
Title: MicroRNA-15b promotes neurogenesis and inhibits neural progenitor proliferation by directly repressing TET3 during early neocortical development.
Volume: 15
Issue: 12
Pages: 1305-14
Publication    
First Author: Lio CW
Year: 2016
Journal: Elife
Title: Tet2 and Tet3 cooperate with B-lineage transcription factors to regulate DNA modification and chromatin accessibility.
Volume: 5
Publication
First Author: Tanaka S
Year: 2020
Journal: Nat Immunol
Title: Tet2 and Tet3 in B cells are required to repress CD86 and prevent autoimmunity.
Volume: 21
Issue: 8
Pages: 950-961
Publication
First Author: Kang J
Year: 2015
Journal: Proc Natl Acad Sci U S A
Title: Simultaneous deletion of the methylcytosine oxidases Tet1 and Tet3 increases transcriptome variability in early embryogenesis.
Volume: 112
Issue: 31
Pages: E4236-45
Publication  
First Author: Rakoczy J
Year: 2017
Journal: Placenta
Title: Dynamic expression of TET1, TET2, and TET3 dioxygenases in mouse and human placentas throughout gestation.
Volume: 59
Pages: 46-56
Publication
First Author: Iqbal K
Year: 2011
Journal: Proc Natl Acad Sci U S A
Title: Reprogramming of the paternal genome upon fertilization involves genome-wide oxidation of 5-methylcytosine.
Volume: 108
Issue: 9
Pages: 3642-7
Publication  
First Author: Wossidlo M
Year: 2011
Journal: Nat Commun
Title: 5-Hydroxymethylcytosine in the mammalian zygote is linked with epigenetic reprogramming.
Volume: 2
Pages: 241
Publication
First Author: Ito S
Year: 2011
Journal: Science
Title: Tet proteins can convert 5-methylcytosine to 5-formylcytosine and 5-carboxylcytosine.
Volume: 333
Issue: 6047
Pages: 1300-3
Publication
First Author: Nakamura T
Year: 2012
Journal: Nature
Title: PGC7 binds histone H3K9me2 to protect against conversion of 5mC to 5hmC in early embryos.
Volume: 486
Issue: 7403
Pages: 415-9
Publication
First Author: Hatanaka Y
Year: 2017
Journal: Cell Rep
Title: Histone H3 Methylated at Arginine 17 Is Essential for Reprogramming the Paternal Genome in Zygotes.
Volume: 20
Issue: 12
Pages: 2756-2765
Publication
First Author: Ito S
Year: 2010
Journal: Nature
Title: Role of Tet proteins in 5mC to 5hmC conversion, ES-cell self-renewal and inner cell mass specification.
Volume: 466
Issue: 7310
Pages: 1129-33
Publication
First Author: Selimoglu-Buet D
Year: 2018
Journal: Nat Commun
Title: A miR-150/TET3 pathway regulates the generation of mouse and human non-classical monocyte subset.
Volume: 9
Issue: 1
Pages: 5455
Publication
First Author: Zhu X
Year: 2016
Journal: Neuron
Title: Role of Tet1/3 Genes and Chromatin Remodeling Genes in Cerebellar Circuit Formation.
Volume: 89
Issue: 1
Pages: 100-12
Publication
First Author: Tsagaratou A
Year: 2017
Journal: Nat Immunol
Title: TET proteins regulate the lineage specification and TCR-mediated expansion of iNKT cells.
Volume: 18
Issue: 1
Pages: 45-53
Publication    
First Author: Stoyanova E
Year: 2021
Journal: Elife
Title: 5-Hydroxymethylcytosine-mediated active demethylation is required for mammalian neuronal differentiation and function.
Volume: 10
Publication
First Author: Yang D
Year: 2020
Journal: EMBO Rep
Title: The microRNA/TET3/REST axis is required for olfactory globose basal cell proliferation and male behavior.
Volume: 21
Issue: 9
Pages: e49431
Publication
First Author: Shrestha R
Year: 2020
Journal: Blood Adv
Title: Molecular pathogenesis of progression to myeloid leukemia from TET-insufficient status.
Volume: 4
Issue: 5
Pages: 845-854
Publication
First Author: Ito R
Year: 2014
Journal: Genes Cells
Title: TET3-OGT interaction increases the stability and the presence of OGT in chromatin.
Volume: 19
Issue: 1
Pages: 52-65
Publication
First Author: Colquitt BM
Year: 2013
Journal: Proc Natl Acad Sci U S A
Title: Alteration of genic 5-hydroxymethylcytosine patterning in olfactory neurons correlates with changes in gene expression and cell identity.
Volume: 110
Issue: 36
Pages: 14682-7
Publication
First Author: Khoueiry R
Year: 2017
Journal: Nat Genet
Title: Lineage-specific functions of TET1 in the postimplantation mouse embryo.
Volume: 49
Issue: 7
Pages: 1061-1072
Publication
First Author: Amouroux R
Year: 2016
Journal: Nat Cell Biol
Title: De novo DNA methylation drives 5hmC accumulation in mouse zygotes.
Volume: 18
Issue: 2
Pages: 225-233
Publication
First Author: Fang S
Year: 2019
Journal: Nat Commun
Title: Tet inactivation disrupts YY1 binding and long-range chromatin interactions during embryonic heart development.
Volume: 10
Issue: 1
Pages: 4297
Publication
First Author: Tahiliani M
Year: 2009
Journal: Science
Title: Conversion of 5-methylcytosine to 5-hydroxymethylcytosine in mammalian DNA by MLL partner TET1.
Volume: 324
Issue: 5929
Pages: 930-5
Publication
First Author: Nakatsukasa H
Year: 2019
Journal: Int Immunol
Title: Loss of TET proteins in regulatory T cells promotes abnormal proliferation, Foxp3 destabilization and IL-17 expression.
Volume: 31
Issue: 5
Pages: 335-347
Publication
First Author: Dzitoyeva S
Year: 2012
Journal: Neurobiol Aging
Title: Effect of aging on 5-hydroxymethylcytosine in brain mitochondria.
Volume: 33
Issue: 12
Pages: 2881-91
Publication
First Author: Santos F
Year: 2013
Journal: Epigenetics Chromatin
Title: Active demethylation in mouse zygotes involves cytosine deamination and base excision repair.
Volume: 6
Issue: 1
Pages: 39
Publication
First Author: Li X
Year: 2016
Journal: Proc Natl Acad Sci U S A
Title: Tet proteins influence the balance between neuroectodermal and mesodermal fate choice by inhibiting Wnt signaling.
Volume: 113
Issue: 51
Pages: E8267-E8276
Publication  
First Author: Lio CJ
Year: 2019
Journal: Sci Immunol
Title: TET enzymes augment activation-induced deaminase (AID) expression via 5-hydroxymethylcytosine modifications at the Aicda superenhancer.
Volume: 4
Issue: 34
Publication
First Author: Teghanemt A
Year: 2023
Journal: EMBO Rep
Title: DNA demethylation fine-tunes IL-2 production during thymic regulatory T cell differentiation.
Volume: 24
Issue: 5
Pages: e55543
Protein Coding Gene
Type: protein_coding_gene
Organism: Mus caroli
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: mouse, laboratory
Protein Coding Gene
Type: protein_coding_gene
Organism: Mus pahari
Protein Coding Gene
Type: protein_coding_gene
Organism: Mus spretus
Publication
First Author: Li X
Year: 2014
Journal: Proc Natl Acad Sci U S A
Title: Neocortical Tet3-mediated accumulation of 5-hydroxymethylcytosine promotes rapid behavioral adaptation.
Volume: 111
Issue: 19
Pages: 7120-5
GXD Expression      
Probe: MGI:4836755
Assay Type: RT-PCR
Annotation Date: 2010-10-29
Strength: Not Specified
Sex: Not Specified
Emaps: EMAPS:1754428
Stage: TS28
Assay Id: MGI:4836832
Age: postnatal
Image: S5
Specimen Label: Brain cortex
Specimen Num: 4
GXD Expression      
Probe: MGI:4836755
Assay Type: RT-PCR
Annotation Date: 2010-10-29
Strength: Not Specified
Sex: Not Specified
Emaps: EMAPS:3267828
Stage: TS28
Assay Id: MGI:4836832
Age: postnatal
Image: S5
Specimen Label: Brain Stem
Specimen Num: 5
GXD Expression      
Probe: MGI:4836755
Assay Type: RT-PCR
Annotation Date: 2010-10-29
Strength: Not Specified
Sex: Not Specified
Emaps: EMAPS:1778728
Stage: TS28
Assay Id: MGI:4836832
Age: postnatal
Image: S5
Specimen Label: Cerebellum
Specimen Num: 6
GXD Expression      
Probe: MGI:4836755
Assay Type: RT-PCR
Annotation Date: 2010-10-29
Strength: Not Specified
Sex: Not Specified
Emaps: EMAPS:1876828
Stage: TS28
Assay Id: MGI:4836832
Age: postnatal
Image: S5
Specimen Label: Thymus
Specimen Num: 7
GXD Expression      
Probe: MGI:4836755
Assay Type: RT-PCR
Annotation Date: 2010-10-29
Strength: Not Specified
Sex: Not Specified
Emaps: EMAPS:1610528
Stage: TS28
Assay Id: MGI:4836832
Age: postnatal
Image: S5
Specimen Label: Heart
Specimen Num: 8
GXD Expression      
Probe: MGI:4836755
Assay Type: RT-PCR
Annotation Date: 2010-10-29
Strength: Not Specified
Sex: Not Specified
Emaps: EMAPS:1672828
Stage: TS28
Assay Id: MGI:4836832
Age: postnatal
Image: S5
Specimen Label: Lung
Specimen Num: 9
GXD Expression      
Probe: MGI:4836755
Assay Type: RT-PCR
Annotation Date: 2010-10-29
Strength: Not Specified
Sex: Not Specified
Emaps: EMAPS:3280928
Stage: TS28
Assay Id: MGI:4836832
Age: postnatal
Image: S5
Specimen Label: Olfactory Bulb
Specimen Num: 10
GXD Expression      
Probe: MGI:4836755
Assay Type: RT-PCR
Annotation Date: 2010-10-29
Strength: Not Specified
Sex: Not Specified
Emaps: EMAPS:1876728
Stage: TS28
Assay Id: MGI:4836832
Age: postnatal
Image: S5
Specimen Label: Spleen
Specimen Num: 11
GXD Expression      
Probe: MGI:4836755
Assay Type: RT-PCR
Annotation Date: 2010-10-29
Strength: Not Specified
Sex: Not Specified
Emaps: EMAPS:3276028
Stage: TS28
Assay Id: MGI:4836832
Age: postnatal
Image: S5
Specimen Label: Bone marrow
Specimen Num: 12
GXD Expression      
Probe: MGI:4836755
Assay Type: RT-PCR
Annotation Date: 2010-10-29
Strength: Not Specified
Sex: Not Specified
Emaps: EMAPS:1684628
Stage: TS28
Assay Id: MGI:4836832
Age: postnatal
Image: S5
Specimen Label: Liver
Specimen Num: 13
GXD Expression      
Probe: MGI:4836755
Assay Type: RT-PCR
Annotation Date: 2010-10-29
Strength: Not Specified
Sex: Female
Emaps: EMAPS:1796228
Stage: TS28
Assay Id: MGI:4836832
Age: postnatal
Image: S5
Specimen Label: Ovary
Specimen Num: 14
GXD Expression      
Probe: MGI:4836755
Assay Type: RT-PCR
Annotation Date: 2010-10-29
Strength: Not Specified
Sex: Not Specified
Emaps: EMAPS:1750328
Stage: TS28
Assay Id: MGI:4836832
Age: postnatal
Image: S5
Specimen Label: Pancreas
Specimen Num: 15
GXD Expression      
Probe: MGI:4836755
Assay Type: RT-PCR
Annotation Date: 2010-10-29
Strength: Not Specified
Sex: Not Specified
Emaps: EMAPS:1737328
Stage: TS28
Assay Id: MGI:4836832
Age: postnatal
Image: S5
Specimen Label: Kidney
Specimen Num: 16
GXD Expression    
Probe: MGI:4946953
Assay Type: RT-PCR
Annotation Date: 2011-04-19
Strength: Present
Sex: Female
Emaps: EMAPS:3102528
Stage: TS28
Assay Id: MGI:4946959
Age: postnatal
Image: 4
Specimen Label: Oocyte
Detected: true
Specimen Num: 1
GXD Expression    
Probe: MGI:4946953
Assay Type: RT-PCR
Annotation Date: 2011-04-19
Strength: Present
Sex: Not Specified
Emaps: EMAPS:360411
Stage: TS01
Assay Id: MGI:4946959
Age: embryonic day 0.5
Image: 4
Specimen Label: Zygote
Detected: true
Specimen Num: 2
GXD Expression    
Probe: MGI:4946953
Assay Type: RT-PCR
Annotation Date: 2011-04-19
Strength: Present
Sex: Not Specified
Emaps: EMAPS:360422
Stage: TS02
Assay Id: MGI:4946959
Age: embryonic day 1.0
Image: 4
Specimen Label: 2 Cell
Detected: true
Specimen Num: 3
GXD Expression    
Probe: MGI:4946953
Assay Type: RT-PCR
Annotation Date: 2011-04-19
Strength: Absent
Sex: Not Specified
Emaps: EMAPS:360433
Stage: TS03
Assay Id: MGI:4946959
Age: embryonic day 2.0
Image: 4
Specimen Label: 4 Cell
Detected: false
Specimen Num: 4
GXD Expression    
Probe: MGI:4946953
Assay Type: RT-PCR
Annotation Date: 2011-04-19
Strength: Absent
Sex: Not Specified
Emaps: EMAPS:360443
Stage: TS03
Assay Id: MGI:4946959
Age: embryonic day 2.5
Image: 4
Specimen Label: 8 Cell
Detected: false
Specimen Num: 5
GXD Expression    
Probe: MGI:5922003
Assay Type: RT-PCR
Annotation Date: 2017-11-15
Strength: Absent
Sex: Not Specified
Emaps: EMAPS:160508
Stage: TS08
Assay Id: MGI:5924938
Age: embryonic day 6.0
Image: 1
Specimen Label: E6.0
Detected: false
Specimen Num: 2
GXD Expression    
Probe: MGI:5922003
Assay Type: RT-PCR
Annotation Date: 2017-11-15
Strength: Absent
Sex: Not Specified
Emaps: EMAPS:160399
Stage: TS09
Assay Id: MGI:5924938
Age: embryonic day 6.5
Image: 1
Specimen Label: E6.5
Detected: false
Specimen Num: 3
GXD Expression    
Probe: MGI:5922003
Assay Type: RT-PCR
Annotation Date: 2017-11-15
Strength: Absent
Sex: Not Specified
Emaps: EMAPS:1603910
Stage: TS10
Assay Id: MGI:5924938
Age: embryonic day 7.0
Image: 1
Specimen Label: E7.0
Detected: false
Specimen Num: 4
GXD Expression    
Probe: MGI:5922003
Assay Type: RT-PCR
Annotation Date: 2017-11-15
Strength: Present
Sex: Not Specified
Emaps: EMAPS:1603913
Stage: TS13
Assay Id: MGI:5924938
Age: embryonic day 8.5
Image: 1
Specimen Label: E8.5
Detected: true
Specimen Num: 5
GXD Expression    
Probe: MGI:5922003
Assay Type: RT-PCR
Annotation Date: 2017-11-15
Strength: Present
Sex: Not Specified
Emaps: EMAPS:1603915
Stage: TS15
Assay Id: MGI:5924938
Age: embryonic day 9.5
Image: 1
Specimen Label: E9.5
Detected: true
Specimen Num: 6
GXD Expression    
Probe: MGI:5922003
Assay Type: RT-PCR
Annotation Date: 2017-11-15
Strength: Present
Sex: Not Specified
Emaps: EMAPS:1603917
Stage: TS17
Assay Id: MGI:5924938
Age: embryonic day 10.5
Image: 1
Specimen Label: E10.5
Detected: true
Specimen Num: 7