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Search results 1 to 100 out of 3126 for Wt1

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0.056s
Type Details Score
Gene
Type: gene
Organism: Homo sapiens
Gene
Type: gene
Organism: Rattus norvegicus
Protein Coding Gene
Type: protein_coding_gene
Organism: Mus musculus
HT Sample  
Organism Name: mouse, laboratory
Sex: Male
Age: postnatal day 21
Stage: 28
Structure . Name: testis
Curation Status: Curated
HT Sample  
Organism Name: mouse, laboratory
Sex: Male
Age: postnatal week 16
Stage: 28
Structure . Name: liver
Curation Status: Curated
HT Sample  
Organism Name: mouse, laboratory
Sex: Male
Age: postnatal day 15
Stage: 28
Structure . Name: liver
Curation Status: Curated
HT Sample  
Organism Name: mouse, laboratory
Sex: Male
Age: postnatal adult
Stage: 28
Structure . Name: testis
Curation Status: Curated
HT Sample  
Organism Name: mouse, laboratory
Sex: Not Specified
Age: embryonic day 18.5
Stage: 26
Structure . Name: liver
Curation Status: Curated
HT Sample  
Organism Name: mouse, laboratory
Sex: Not Specified
Age: embryonic day 14.5
Stage: 22
Structure . Name: heart
Curation Status: Curated
HT Sample  
Organism Name: mouse, laboratory
Sex: Female
Age: postnatal month 2-3
Stage: 28
Structure . Name: liver
Curation Status: Curated
HT Sample  
Organism Name: mouse, laboratory
Sex: Male
Age: postnatal day 15
Stage: 28
Structure . Name: liver
Curation Status: Curated
HT Sample  
Organism Name: mouse, laboratory
Sex: Not Specified
Age: postnatal week 4-6
Stage: 28
Structure . Name: liver
Curation Status: Curated
HT Sample  
Organism Name: mouse, laboratory
Sex: Male
Age: postnatal day 18
Stage: 28
Structure . Name: testis
Curation Status: Curated
HT Sample
Organism Name: mouse, laboratory
Sex: Female
Age: postnatal adult
Stage: 28
Structure . Name: heart
Notes: wild type
Curation Status: Curated
HT Sample
Organism Name: mouse, laboratory
Sex: Female
Age: postnatal month 11
Stage: 28
Structure . Name: heart
Notes: wild type
Curation Status: Curated
HT Sample
Organism Name: mouse, laboratory
Sex: Female
Age: postnatal day 35-40
Stage: 28
Structure . Name: liver
Notes: wild type
Curation Status: Curated
HT Sample  
Organism Name: mouse, laboratory
Sex: Male
Age: postnatal month 2-3
Stage: 28
Structure . Name: liver
Curation Status: Curated
HT Sample  
Organism Name: mouse, laboratory
Sex: Not Specified
Age: postnatal day 18
Stage: 28
Structure . Name: cerebellum Purkinje cell layer
Curation Status: Curated
HT Sample  
Organism Name: mouse, laboratory
Sex: Female
Age: postnatal day 11
Stage: 28
Structure . Name: hair follicle
Curation Status: Curated
HT Sample
Organism Name: mouse, laboratory
Sex: Not Specified
Age: embryonic day 10.5
Stage: 17
Structure . Name: body wall
Notes: abdominal wall
Curation Status: Curated
HT Sample  
Organism Name: mouse, laboratory
Sex: Not Specified
Age: postnatal week 5-8
Stage: 28
Structure . Name: lung
Curation Status: Curated
HT Sample  
Organism Name: mouse, laboratory
Sex: Male
Age: postnatal week 12-13
Stage: 28
Structure . Name: duodenum
Curation Status: Curated
HT Sample  
Organism Name: mouse, laboratory
Sex: Not Specified
Age: postnatal week 5
Stage: 28
Structure . Name: thymus
Curation Status: Curated
Publication
First Author: Rudat C
Year: 2012
Journal: Circ Res
Title: Wt1 and epicardial fate mapping.
Volume: 111
Issue: 2
Pages: 165-9
Publication
First Author: Gao Y
Year: 2014
Journal: Development
Title: WT1 regulates the development of the posterior taste field.
Volume: 141
Issue: 11
Pages: 2271-8
Publication
First Author: Xu J
Year: 2016
Journal: PLoS One
Title: Osr1 Interacts Synergistically with Wt1 to Regulate Kidney Organogenesis.
Volume: 11
Issue: 7
Pages: e0159597
Publication
First Author: Ariza L
Year: 2018
Journal: Dev Dyn
Title: Role of the Wilms' tumor suppressor gene Wt1 in pancreatic development.
Volume: 247
Issue: 7
Pages: 924-933
Publication    
First Author: Carmona R
Year: 2016
Journal: Elife
Title: Conditional deletion of WT1 in the septum transversum mesenchyme causes congenital diaphragmatic hernia in mice.
Volume: 5
Publication
First Author: Paris ND
Year: 2015
Journal: Dev Biol
Title: Wt1 and β-catenin cooperatively regulate diaphragm development in the mouse.
Volume: 407
Issue: 1
Pages: 40-56
Publication
First Author: Norden J
Year: 2010
Journal: Circ Res
Title: Wt1 and retinoic acid signaling in the subcoelomic mesenchyme control the development of the pleuropericardial membranes and the sinus horns.
Volume: 106
Issue: 7
Pages: 1212-20
Publication
First Author: von Gise A
Year: 2011
Journal: Dev Biol
Title: WT1 regulates epicardial epithelial to mesenchymal transition through β-catenin and retinoic acid signaling pathways.
Volume: 356
Issue: 2
Pages: 421-31
Publication  
First Author: Vieira JM
Year: 2017
Journal: Nat Commun
Title: BRG1-SWI/SNF-dependent regulation of the Wt1 transcriptional landscape mediates epicardial activity during heart development and disease.
Volume: 8
Pages: 16034
Publication
First Author: Buechler MB
Year: 2019
Journal: Immunity
Title: A Stromal Niche Defined by Expression of the Transcription Factor WT1 Mediates Programming and Homeostasis of Cavity-Resident Macrophages.
Volume: 51
Issue: 1
Pages: 119-130.e5
Publication
First Author: Chau YY
Year: 2014
Journal: Nat Cell Biol
Title: Visceral and subcutaneous fat have different origins and evidence supports a mesothelial source.
Volume: 16
Issue: 4
Pages: 367-75
Publication
First Author: Bellomo A
Year: 2020
Journal: Immunity
Title: Reticular Fibroblasts Expressing the Transcription Factor WT1 Define a Stromal Niche that Maintains and Replenishes Splenic Red Pulp Macrophages.
Volume: 53
Issue: 1
Pages: 127-142.e7
Publication
First Author: Ariza L
Year: 2019
Journal: PLoS Genet
Title: The Wilms' tumor suppressor gene regulates pancreas homeostasis and repair.
Volume: 15
Issue: 2
Pages: e1007971
Publication
First Author: Zolak JS
Year: 2013
Journal: Am J Pathol
Title: Pleural mesothelial cell differentiation and invasion in fibrogenic lung injury.
Volume: 182
Issue: 4
Pages: 1239-47
Publication
First Author: Suffee N
Year: 2017
Journal: Proc Natl Acad Sci U S A
Title: Atrial natriuretic peptide regulates adipose tissue accumulation in adult atria.
Volume: 114
Issue: 5
Pages: E771-E780
Publication
First Author: Tanaka M
Year: 2017
Journal: Cancer Res
Title: Mesothelial Cells Create a Novel Tissue Niche That Facilitates Gastric Cancer Invasion.
Volume: 77
Issue: 3
Pages: 684-695
Publication
First Author: Moazzen H
Year: 2015
Journal: Diabetes
Title: Pregestational diabetes induces fetal coronary artery malformation via reactive oxygen species signaling.
Volume: 64
Issue: 4
Pages: 1431-43
Gene
Type: gene
Organism: Homo sapiens
Gene
Type: gene
Organism: Homo sapiens
Gene
Type: gene
Organism: Homo sapiens
Gene
Type: gene
Organism: Homo sapiens
Gene
Type: gene
Organism: Homo sapiens
Publication
First Author: Zhou B
Year: 2011
Journal: J Clin Invest
Title: Adult mouse epicardium modulates myocardial injury by secreting paracrine factors.
Volume: 121
Issue: 5
Pages: 1894-904
Publication
First Author: Zhou B
Year: 2010
Journal: Dev Biol
Title: Genetic fate mapping demonstrates contribution of epicardium-derived cells to the annulus fibrosis of the mammalian heart.
Volume: 338
Issue: 2
Pages: 251-61
Publication
First Author: Tian X
Year: 2013
Journal: PLoS One
Title: Peritruncal coronary endothelial cells contribute to proximal coronary artery stems and their aortic orifices in the mouse heart.
Volume: 8
Issue: 11
Pages: e80857
Publication
First Author: Zangi L
Year: 2017
Journal: Circulation
Title: Insulin-Like Growth Factor 1 Receptor-Dependent Pathway Drives Epicardial Adipose Tissue Formation After Myocardial Injury.
Volume: 135
Issue: 1
Pages: 59-72
Publication
First Author: Colunga T
Year: 2019
Journal: Cell Rep
Title: Human Pluripotent Stem Cell-Derived Multipotent Vascular Progenitors of the Mesothelium Lineage Have Utility in Tissue Engineering and Repair.
Volume: 26
Issue: 10
Pages: 2566-2579.e10
Publication
First Author: Bhattacharyya S
Year: 2019
Journal: PLoS One
Title: PAN-INTACT enables direct isolation of lineage-specific nuclei from fibrous tissues.
Volume: 14
Issue: 4
Pages: e0214677
Publication
First Author: Smart N
Year: 2011
Journal: Nature
Title: De novo cardiomyocytes from within the activated adult heart after injury.
Volume: 474
Issue: 7353
Pages: 640-4
Publication  
First Author: Sontake V
Year: 2018
Journal: JCI Insight
Title: Wilms' tumor 1 drives fibroproliferation and myofibroblast transformation in severe fibrotic lung disease.
Volume: 3
Issue: 16
Publication
First Author: Carré GA
Year: 2018
Journal: Hum Mol Genet
Title: Loss of p300 and CBP disrupts histone acetylation at the mouse Sry promoter and causes XY gonadal sex reversal.
Volume: 27
Issue: 1
Pages: 190-198
Publication    
First Author: Hepler C
Year: 2017
Journal: Elife
Title: Directing visceral white adipocyte precursors to a thermogenic adipocyte fate improves insulin sensitivity in obese mice.
Volume: 6
Publication
First Author: Zhou B
Year: 2012
Journal: Circ Res
Title: Genetic Cre-loxP assessment of epicardial cell fate using Wt1-driven Cre alleles.
Volume: 111
Issue: 11
Pages: e276-80
Publication  
First Author: Singh E
Year: 2021
Journal: Gene Expr Patterns
Title: Dynamic changes in endoglin expression in the developing mouse heart.
Volume: 39
Pages: 119165
Publication
First Author: Que J
Year: 2008
Journal: Proc Natl Acad Sci U S A
Title: Mesothelium contributes to vascular smooth muscle and mesenchyme during lung development.
Volume: 105
Issue: 43
Pages: 16626-30
Publication
First Author: Moore-Morris T
Year: 2014
Journal: J Clin Invest
Title: Resident fibroblast lineages mediate pressure overload-induced cardiac fibrosis.
Volume: 124
Issue: 7
Pages: 2921-34
Publication
First Author: De Cian MC
Year: 2020
Journal: Cell Death Differ
Title: R-spondin2 signaling is required for oocyte-driven intercellular communication and follicular growth.
Volume: 27
Issue: 10
Pages: 2856-2871
Gene
Type: gene
Organism: Homo sapiens
Publication
First Author: Sereti KI
Year: 2018
Journal: Nat Commun
Title: Analysis of cardiomyocyte clonal expansion during mouse heart development and injury.
Volume: 9
Issue: 1
Pages: 754
GXD Expression  
Probe: MGI:3038122
Assay Type: Immunohistochemistry
Annotation Date: 2018-10-17
Strength: Present
Sex: Not Specified
Emaps: EMAPS:1737327
Pattern: Not Specified
Stage: TS27
Assay Id: MGI:6202548
Age: postnatal day 0
Image: 4D WT1
Detected: true
Specimen Num: 1
GXD Expression  
Probe: MGI:2664238
Assay Type: RNA in situ
Annotation Date: 2003-07-14
Strength: Present
Sex: Not Specified
Emaps: EMAPS:3643720
Pattern: Not Specified
Stage: TS20
Assay Id: MGI:2665167
Age: embryonic day 12.5
Image: M WT1
Detected: true
Specimen Num: 3
GXD Expression  
Probe: MGI:2664238
Assay Type: RNA in situ
Annotation Date: 2003-07-14
Strength: Present
Sex: Not Specified
Emaps: EMAPS:1737519
Pattern: Not Specified
Stage: TS19
Assay Id: MGI:2665167
Age: embryonic day 11.5
Image: O WT1
Detected: true
Specimen Num: 1
GXD Expression
Probe: MGI:2664238
Assay Type: RNA in situ
Annotation Date: 2003-07-14
Strength: Present
Sex: Not Specified
Emaps: EMAPS:1737519
Pattern: Not Specified
Stage: TS19
Assay Id: MGI:2665167
Age: embryonic day 11.5
Image: P WT1
Note: Expression in this mutant is the same as in wild-type embryos.
Detected: true
Specimen Num: 2
Publication
First Author: Li Y
Year: 2013
Journal: Proc Natl Acad Sci U S A
Title: Mesothelial cells give rise to hepatic stellate cells and myofibroblasts via mesothelial-mesenchymal transition in liver injury.
Volume: 110
Issue: 6
Pages: 2324-9
Publication
First Author: Komarovsky Gulman N
Year: 2019
Journal: FASEB J
Title: Heterochronic regulation of lung development via the Lin28-Let-7 pathway.
Volume: 33
Issue: 11
Pages: 12008-12018
Publication
First Author: Hunter RW
Year: 2018
Journal: Genes Dev
Title: Loss of Dis3l2 partially phenocopies Perlman syndrome in mice and results in up-regulation of Igf2 in nephron progenitor cells.
Volume: 32
Issue: 13-14
Pages: 903-908
Publication
First Author: Lindeman RE
Year: 2015
Journal: Curr Biol
Title: Sexual cell-fate reprogramming in the ovary by DMRT1.
Volume: 25
Issue: 6
Pages: 764-71
Publication    
First Author: Li N
Year: 2020
Journal: Elife
Title: Increasing heart vascularisation after myocardial infarction using brain natriuretic peptide stimulation of endothelial and WT1+ epicardial cells.
Volume: 9
Publication  
First Author: Habara O
Year: 2021
Journal: Development
Title: WNT signaling in pre-granulosa cells is required for ovarian folliculogenesis and female fertility.
Volume: 148
Issue: 9
Publication
First Author: Ramjee V
Year: 2017
Journal: J Clin Invest
Title: Epicardial YAP/TAZ orchestrate an immunosuppressive response following myocardial infarction.
Volume: 127
Issue: 3
Pages: 899-911
Publication
First Author: Stevens SM
Year: 2016
Journal: Dev Biol
Title: Epicardium is required for cardiac seeding by yolk sac macrophages, precursors of resident macrophages of the adult heart.
Volume: 413
Issue: 2
Pages: 153-159
Publication
First Author: Lua I
Year: 2015
Journal: Am J Pathol
Title: Myofibroblastic Conversion and Regeneration of Mesothelial Cells in Peritoneal and Liver Fibrosis.
Volume: 185
Issue: 12
Pages: 3258-73
Publication
First Author: Cano E
Year: 2016
Journal: Proc Natl Acad Sci U S A
Title: Extracardiac septum transversum/proepicardial endothelial cells pattern embryonic coronary arterio-venous connections.
Volume: 113
Issue: 3
Pages: 656-61
Publication
First Author: Pu W
Year: 2018
Journal: Circ Res
Title: Genetic Targeting of Organ-Specific Blood Vessels.
Volume: 123
Issue: 1
Pages: 86-99
Publication
First Author: Wetzel-Strong SE
Year: 2014
Journal: Dev Dyn
Title: Epicardial-derived adrenomedullin drives cardiac hyperplasia during embryogenesis.
Volume: 243
Issue: 2
Pages: 243-56
Publication
First Author: Singh A
Year: 2016
Journal: Cell Rep
Title: Hippo Signaling Mediators Yap and Taz Are Required in the Epicardium for Coronary Vasculature Development.
Volume: 15
Issue: 7
Pages: 1384-1393
Publication
First Author: Haque F
Year: 2018
Journal: J Neurosci
Title: WT1-Expressing Interneurons Regulate Left-Right Alternation during Mammalian Locomotor Activity.
Volume: 38
Issue: 25
Pages: 5666-5676
Publication
First Author: Zhou B
Year: 2008
Journal: Nature
Title: Epicardial progenitors contribute to the cardiomyocyte lineage in the developing heart.
Volume: 454
Issue: 7200
Pages: 109-13
Publication  
First Author: Wang W
Year: 2020
Journal: Differentiation
Title: Spatial and temporal deletion reveals a latent effect of Megf8 on the left-right patterning and heart development.
Volume: 113
Pages: 19-25
Publication
First Author: Moiseenko A
Year: 2017
Journal: Stem Cells
Title: Origin and characterization of alpha smooth muscle actin-positive cells during murine lung development.
Volume: 35
Issue: 6
Pages: 1566-1578
Publication
First Author: Dixit R
Year: 2013
Journal: Development
Title: Derivation of lung mesenchymal lineages from the fetal mesothelium requires hedgehog signaling for mesothelial cell entry.
Volume: 140
Issue: 21
Pages: 4398-406
Publication
First Author: Asahina K
Year: 2011
Journal: Hepatology
Title: Septum transversum-derived mesothelium gives rise to hepatic stellate cells and perivascular mesenchymal cells in developing mouse liver.
Volume: 53
Issue: 3
Pages: 983-95
Publication
First Author: Ogawa T
Year: 2018
Journal: Dev Dyn
Title: Isolation of a unique hepatic stellate cell population expressing integrin α8 from embryonic mouse livers.
Volume: 247
Issue: 6
Pages: 867-881
Publication
First Author: Taguchi A
Year: 2017
Journal: Cell Stem Cell
Title: Higher-Order Kidney Organogenesis from Pluripotent Stem Cells.
Volume: 21
Issue: 6
Pages: 730-746.e6
Publication    
First Author: Barrionuevo FJ
Year: 2016
Journal: Elife
Title: Sox9 and Sox8 protect the adult testis from male-to-female genetic reprogramming and complete degeneration.
Volume: 5
Publication
First Author: Hu YC
Year: 2015
Journal: PLoS Genet
Title: Licensing of primordial germ cells for gametogenesis depends on genital ridge signaling.
Volume: 11
Issue: 3
Pages: e1005019
Publication
First Author: Snitow M
Year: 2016
Journal: Development
Title: Ezh2 restricts the smooth muscle lineage during mouse lung mesothelial development.
Volume: 143
Issue: 20
Pages: 3733-3741
Publication
First Author: Vicente-Steijn R
Year: 2015
Journal: PLoS One
Title: Regional differences in WT-1 and Tcf21 expression during ventricular development: implications for myocardial compaction.
Volume: 10
Issue: 9
Pages: e0136025
Publication
First Author: Xiao Y
Year: 2018
Journal: Dev Cell
Title: Hippo Signaling Plays an Essential Role in Cell State Transitions during Cardiac Fibroblast Development.
Volume: 45
Issue: 2
Pages: 153-169.e6
Publication
First Author: Hu YC
Year: 2013
Journal: PLoS Genet
Title: Gata4 is required for formation of the genital ridge in mice.
Volume: 9
Issue: 7
Pages: e1003629
Publication
First Author: Mellgren AM
Year: 2008
Journal: Circ Res
Title: Platelet-derived growth factor receptor beta signaling is required for efficient epicardial cell migration and development of two distinct coronary vascular smooth muscle cell populations.
Volume: 103
Issue: 12
Pages: 1393-401
Publication
First Author: Baek ST
Year: 2012
Journal: Development
Title: Nf1 limits epicardial derivative expansion by regulating epithelial to mesenchymal transition and proliferation.
Volume: 139
Issue: 11
Pages: 2040-9
Publication  
First Author: Arora H
Year: 2016
Journal: Sci Rep
Title: Prokineticin receptor-1 signaling promotes Epicardial to Mesenchymal Transition during heart development.
Volume: 6
Pages: 25541
Publication
First Author: Zhao F
Year: 2017
Journal: Science
Title: Elimination of the male reproductive tract in the female embryo is promoted by COUP-TFII in mice.
Volume: 357
Issue: 6352
Pages: 717-720
Publication    
First Author: Bailey KE
Year: 2019
Journal: JCI Insight
Title: Disruption of embryonic ROCK signaling reproduces the sarcomeric phenotype of hypertrophic cardiomyopathy.
Volume: 5
Publication
First Author: Trembley MA
Year: 2015
Journal: Development
Title: Myocardin-related transcription factors control the motility of epicardium-derived cells and the maturation of coronary vessels.
Volume: 142
Issue: 1
Pages: 21-30
Publication
First Author: Li J
Year: 2017
Journal: Development
Title: CDC42 is required for epicardial and pro-epicardial development by mediating FGF receptor trafficking to the plasma membrane.
Volume: 144
Issue: 9
Pages: 1635-1647