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Search results 101 to 200 out of 1548 for Wnt7b

0.044s
Type Details Score
GXD Expression
Probe: MGI:4442657
Assay Type: RNA in situ
Annotation Date: 2010-05-13
Strength: Strong
Sex: Not Specified
Emaps: EMAPS:1753924
Pattern: Non-Uniform
Stage: TS24
Assay Id: MGI:4450898
Age: embryonic day 16.5
Image: Wnt7b - E16.5
Note: There is strong staining in the VZ of the PH and moderate staining in the dorsal and ventral POAs, the PVH and SCH nuclei, the AVH, the DAH and the PH. Staining is either absent or ubiquitous in the VZ of the DMH, VMH and ARH nuclei.
Specimen Label: Wnt7b - E16.5
Detected: true
Specimen Num: 8
GXD Expression
Probe: MGI:4442657
Assay Type: RNA in situ
Annotation Date: 2010-05-13
Strength: Weak
Sex: Not Specified
Emaps: EMAPS:1691119
Pattern: Non-Uniform
Stage: TS19
Assay Id: MGI:4450898
Age: embryonic day 11.5
Image: Wnt7b - E11.5
Note: There is weak staining in the postmitotic neurons in the intermediate zone and cortical plate of the cerebral cortex. Staining is either absent or ubiquitous in the mantle zone of the ganglionic eminences.
Specimen Label: Wnt7b - E11.5
Detected: true
Specimen Num: 5
GXD Expression  
Probe: MGI:4442657
Assay Type: RNA in situ
Annotation Date: 2010-05-13
Strength: Ambiguous
Sex: Not Specified
Emaps: EMAPS:1754720
Pattern: Not Specified
Stage: TS20
Assay Id: MGI:4450898
Age: embryonic day 12.5
Image: Wnt7b - E12.5
Note: Staining is either absent or ubiquitous in the ventricular zone of the cerebral cortex.
Specimen Label: Wnt7b - E12.5
Specimen Num: 6
GXD Expression  
Probe: MGI:4442657
Assay Type: RNA in situ
Annotation Date: 2010-05-13
Strength: Ambiguous
Sex: Not Specified
Emaps: EMAPS:1754722
Pattern: Not Specified
Stage: TS22
Assay Id: MGI:4450898
Age: embryonic day 14.5
Image: Wnt7b - E14.5
Note: Staining is either absent or ubiquitous in the ventricular zone of the cerebral cortex.
Specimen Label: Wnt7b - E14.5
Specimen Num: 7
GXD Expression
Probe: MGI:4442657
Assay Type: RNA in situ
Annotation Date: 2010-05-13
Strength: Very strong
Sex: Not Specified
Emaps: EMAPS:1754724
Pattern: Not Specified
Stage: TS24
Assay Id: MGI:4450898
Age: embryonic day 16.5
Image: Wnt7b - E16.5
Note: There is very strong staining in the ventricular zone of the cerebral cortex.
Specimen Label: Wnt7b - E16.5
Detected: true
Specimen Num: 8
GXD Expression
Probe: MGI:4442657
Assay Type: RNA in situ
Annotation Date: 2010-05-13
Strength: Strong
Sex: Not Specified
Emaps: EMAPS:3271020
Pattern: Non-Uniform
Stage: TS20
Assay Id: MGI:4450898
Age: embryonic day 12.5
Image: Wnt7b - E12.5
Note: There is strong staining in the ventricular zone of the premam zone and the TT and moderate staining in the mam zone. Staining is either absent or ubiquitous in the ventricular zone of the supramam zone.
Specimen Label: Wnt7b - E12.5
Detected: true
Specimen Num: 6
GXD Expression
Probe: MGI:4442657
Assay Type: RNA in situ
Annotation Date: 2010-05-13
Strength: Strong
Sex: Not Specified
Emaps: EMAPS:3271022
Pattern: Non-Uniform
Stage: TS22
Assay Id: MGI:4450898
Age: embryonic day 14.5
Image: Wnt7b - E14.5
Note: There is strong staining in the ventricular zone of the premam zone and the TT. Staining is either absent or ubiquitous in the ventricular zone of the mam and supramam zones.
Specimen Label: Wnt7b - E14.5
Detected: true
Specimen Num: 7
GXD Expression
Probe: MGI:4442657
Assay Type: RNA in situ
Annotation Date: 2010-05-13
Strength: Strong
Sex: Not Specified
Emaps: EMAPS:3271024
Pattern: Non-Uniform
Stage: TS24
Assay Id: MGI:4450898
Age: embryonic day 16.5
Image: Wnt7b - E16.5
Note: There is strong staining in the ventricular zone of the premam zone. Staining is either absent or ubiquitous in the ventricular zone of the mam and supramam zones.
Specimen Label: Wnt7b - E16.5
Detected: true
Specimen Num: 8
GXD Expression
Probe: MGI:4442657
Assay Type: RNA in situ
Annotation Date: 2010-05-13
Strength: Weak
Sex: Not Specified
Emaps: EMAPS:3266520
Pattern: Non-Uniform
Stage: TS20
Assay Id: MGI:4450898
Age: embryonic day 12.5
Image: Wnt7b - E12.5
Note: There is weak staining in the ventricular zone of the ganglionic eminences. Staining is either absent or ubiquitous in the mantle zone of the ganglionic eminences.
Specimen Label: Wnt7b - E12.5
Detected: true
Specimen Num: 6
GXD Expression
Probe: MGI:4442657
Assay Type: RNA in situ
Annotation Date: 2010-05-13
Strength: Weak
Sex: Not Specified
Emaps: EMAPS:3266522
Pattern: Non-Uniform
Stage: TS22
Assay Id: MGI:4450898
Age: embryonic day 14.5
Image: Wnt7b - E14.5
Note: There is weak staining in the ventricular zone of the ganglionic eminences. Staining is either absent or ubiquitous in the mantle zone of the ganglionic eminences.
Specimen Label: Wnt7b - E14.5
Detected: true
Specimen Num: 7
GXD Expression
Probe: MGI:4442657
Assay Type: RNA in situ
Annotation Date: 2010-05-13
Strength: Weak
Sex: Not Specified
Emaps: EMAPS:3266524
Pattern: Non-Uniform
Stage: TS24
Assay Id: MGI:4450898
Age: embryonic day 16.5
Image: Wnt7b - E16.5
Note: There is weak staining in the ventricular zone of the ganglionic eminences. Staining is either absent or ubiquitous in the mantle zone of the ganglionic eminences.
Specimen Label: Wnt7b - E16.5
Detected: true
Specimen Num: 8
GXD Expression  
Probe: MGI:4442657
Assay Type: RNA in situ
Annotation Date: 2010-05-13
Strength: Ambiguous
Sex: Not Specified
Emaps: EMAPS:1690619
Pattern: Not Specified
Stage: TS19
Assay Id: MGI:4450898
Age: embryonic day 11.5
Image: Wnt7b - E11.5
Note: Staining is either absent or ubiquitous in the mantle zone of the dorsal thalamus, prethalamus, dorsal and ventral POAs, the PVH, VMH and ARH nuclei, the AVH, the anterior and posterior IDs, the premam, mam and supramam zones and the TT.
Specimen Label: Wnt7b - E11.5
Specimen Num: 5
GXD Expression  
Probe: MGI:4442657
Assay Type: RNA in situ
Annotation Date: 2010-05-13
Strength: Ambiguous
Sex: Not Specified
Emaps: EMAPS:1754120
Pattern: Not Specified
Stage: TS20
Assay Id: MGI:4450898
Age: embryonic day 12.5
Image: Wnt7b - E12.5
Note: Staining is either absent or ubiquitous in the mantle zone of the dorsal thalamus and prethalamus.
Specimen Label: Wnt7b - E12.5
Specimen Num: 6
GXD Expression  
Probe: MGI:4442657
Assay Type: RNA in situ
Annotation Date: 2010-05-13
Strength: Ambiguous
Sex: Not Specified
Emaps: EMAPS:1754122
Pattern: Not Specified
Stage: TS22
Assay Id: MGI:4450898
Age: embryonic day 14.5
Image: Wnt7b - E14.5
Note: Staining is either absent or ubiquitous in the mantle zone of the dorsal thalamus and prethalamus.
Specimen Label: Wnt7b - E14.5
Specimen Num: 7
GXD Expression  
Probe: MGI:4442657
Assay Type: RNA in situ
Annotation Date: 2010-05-13
Strength: Ambiguous
Sex: Not Specified
Emaps: EMAPS:1754124
Pattern: Not Specified
Stage: TS24
Assay Id: MGI:4450898
Age: embryonic day 16.5
Image: Wnt7b - E16.5
Note: Staining is either absent or ubiquitous in the mantle zone of the dorsal thalamus and prethalamus.
Specimen Label: Wnt7b - E16.5
Specimen Num: 8
GXD Expression
Probe: MGI:6406960
Assay Type: RNA in situ
Annotation Date: 2020-04-30
Strength: Weak
Sex: Not Specified
Emaps: EMAPS:1689321
Pattern: Regionally restricted
Stage: TS21
Assay Id: MGI:6407066
Age: embryonic day 13.5
Image: 3D Wnt7b inset
Note: Expression primarily in epithelium of body wall, and to a lesser extent in body wall mesenchyme.
Specimen Label: 3D Wnt7b inset
Detected: true
Specimen Num: 2
GXD Expression      
Probe: MGI:3513371
Assay Type: RT-PCR
Annotation Date: 2005-01-10
Strength: Present
Sex: Not Specified
Emaps: EMAPS:360465
Stage: TS05
Assay Id: MGI:3513409
Age: embryonic day 4.0
Specimen Label: Wnt7b
Detected: true
Specimen Num: 12
GXD Expression    
Probe: MGI:5445432
Assay Type: RT-PCR
Annotation Date: 2012-12-12
Strength: Present
Sex: Not Specified
Emaps: EMAPS:3639222
Stage: TS22
Assay Id: MGI:5445545
Age: embryonic day 14.5
Image: 2
Specimen Label: Wnt7b
Detected: true
Specimen Num: 2
GXD Expression      
Probe: MGI:3513371
Assay Type: RT-PCR
Annotation Date: 2005-01-10
Strength: Present
Sex: Not Specified
Emaps: EMAPS:360453
Stage: TS03
Assay Id: MGI:3513389
Age: embryonic day 3.0
Specimen Label: Wnt7b
Detected: true
Specimen Num: 12
Publication
First Author: Parr BA
Year: 2001
Journal: Dev Biol
Title: Wnt7b regulates placental development in mice.
Volume: 237
Issue: 2
Pages: 324-32
Publication
First Author: Chen J
Year: 2014
Journal: PLoS Genet
Title: WNT7B promotes bone formation in part through mTORC1.
Volume: 10
Issue: 1
Pages: e1004145
Publication
First Author: Shu W
Year: 2002
Journal: Development
Title: Wnt7b regulates mesenchymal proliferation and vascular development in the lung.
Volume: 129
Issue: 20
Pages: 4831-42
Publication
First Author: Lin SL
Year: 2010
Journal: Proc Natl Acad Sci U S A
Title: Macrophage Wnt7b is critical for kidney repair and regeneration.
Volume: 107
Issue: 9
Pages: 4194-9
Publication
First Author: Lobov IB
Year: 2005
Journal: Nature
Title: WNT7b mediates macrophage-induced programmed cell death in patterning of the vasculature.
Volume: 437
Issue: 7057
Pages: 417-21
Publication
First Author: Yeo EJ
Year: 2014
Journal: Cancer Res
Title: Myeloid WNT7b mediates the angiogenic switch and metastasis in breast cancer.
Volume: 74
Issue: 11
Pages: 2962-73
Publication  
First Author: Ferrari ME
Year: 2018
Journal: J Cell Sci
Title: Wnt7b signalling through Frizzled-7 receptor promotes dendrite development by coactivating CaMKII and JNK.
Volume: 131
Issue: 13
Publication
First Author: Rajagopal J
Year: 2008
Journal: Development
Title: Wnt7b stimulates embryonic lung growth by coordinately increasing the replication of epithelium and mesenchyme.
Volume: 135
Issue: 9
Pages: 1625-34
Publication
First Author: Kandyba E
Year: 2014
Journal: Stem Cells
Title: Wnt7b is an important intrinsic regulator of hair follicle stem cell homeostasis and hair follicle cycling.
Volume: 32
Issue: 4
Pages: 886-901
Publication
First Author: Roker LA
Year: 2017
Journal: J Am Soc Nephrol
Title: Wnt7b Signaling from the Ureteric Bud Epithelium Regulates Medullary Capillary Development.
Volume: 28
Issue: 1
Pages: 250-259
Publication  
First Author: Tsukamoto S
Year: 2023
Journal: Development
Title: Wnt7b expressed by hypertrophic chondrocytes is a stimulatory factor for endochondral ossification that is regulated by Smad4 activity.
Volume: 150
Issue: 15
Publication
First Author: Weidenfeld J
Year: 2002
Journal: J Biol Chem
Title: The WNT7b promoter is regulated by TTF-1, GATA6, and Foxa2 in lung epithelium.
Volume: 277
Issue: 23
Pages: 21061-70
Publication
First Author: Afelik S
Year: 2015
Journal: Dev Biol
Title: Wnt7b is required for epithelial progenitor growth and operates during epithelial-to-mesenchymal signaling in pancreatic development.
Volume: 399
Issue: 2
Pages: 204-17
Publication  
First Author: Papachristou P
Year: 2014
Journal: Brain Res
Title: Transgenic increase of Wnt7b in neural progenitor cells decreases expression of T-domain transcription factors and impairs neuronal differentiation.
Volume: 1576
Pages: 27-34
Publication
First Author: Wang Z
Year: 2005
Journal: Mol Cell Biol
Title: Wnt7b activates canonical signaling in epithelial and vascular smooth muscle cells through interactions with Fzd1, Fzd10, and LRP5.
Volume: 25
Issue: 12
Pages: 5022-30
GXD Expression    
Probe: MGI:3041690
Assay Type: RNA in situ
Annotation Date: 2004-06-03
Strength: Weak
Sex: Not Specified
Emaps: EMAPS:1667215
Pattern: Not Specified
Stage: TS15
Assay Id: MGI:3042107
Age: embryonic day 9.5
Specimen Label: Table 1, Wnt7b
Detected: true
Specimen Num: 1
Publication
First Author: Kuorelahti A
Year: 2007
Journal: Endocrinology
Title: Human chorionic gonadotropin (hCG) up-regulates wnt5b and wnt7b in the mammary gland, and hCGbeta transgenic female mice present with mammary Gland tumors exhibiting characteristics of the Wnt/beta-catenin pathway activation.
Volume: 148
Issue: 8
Pages: 3694-703
GXD Expression    
Probe: MGI:6186883
Assay Type: RNA in situ
Annotation Date: 2018-07-25
Strength: Present
Sex: Not Specified
Emaps: EMAPS:1689419
Pattern: Not Specified
Stage: TS19
Assay Id: MGI:6191574
Age: embryonic day 11.5
Specimen Label: Table S2 - E11.5 - Wnt7b
Detected: true
Specimen Num: 1
GXD Expression    
Probe: MGI:6186883
Assay Type: RNA in situ
Annotation Date: 2018-07-25
Strength: Present
Sex: Not Specified
Emaps: EMAPS:1689421
Pattern: Not Specified
Stage: TS21
Assay Id: MGI:6191574
Age: embryonic day 13.5
Specimen Label: Table S2 - E13.5 - Wnt7b
Detected: true
Specimen Num: 2
GXD Expression    
Probe: MGI:6186883
Assay Type: RNA in situ
Annotation Date: 2018-07-25
Strength: Present
Sex: Male
Emaps: EMAPS:1689424
Pattern: Not Specified
Stage: TS24
Assay Id: MGI:6191574
Age: embryonic day 15.5
Specimen Label: Table S2 - E15.5 - Wnt7b
Detected: true
Specimen Num: 3
GXD Expression    
Probe: MGI:6186883
Assay Type: RNA in situ
Annotation Date: 2018-07-25
Strength: Present
Sex: Male
Emaps: EMAPS:1689426
Pattern: Not Specified
Stage: TS26
Assay Id: MGI:6191574
Age: embryonic day 18.5
Specimen Label: Table S2 - E18.5 - Wnt7b
Detected: true
Specimen Num: 4
GXD Expression    
Probe: MGI:6186883
Assay Type: RNA in situ
Annotation Date: 2018-07-25
Strength: Present
Sex: Male
Emaps: EMAPS:1689428
Pattern: Not Specified
Stage: TS28
Assay Id: MGI:6191574
Age: postnatal day 4
Specimen Label: Table S2 - P4 - Wnt7b
Detected: true
Specimen Num: 5
GXD Expression    
Probe: MGI:6186883
Assay Type: RNA in situ
Annotation Date: 2018-07-25
Strength: Present
Sex: Male
Emaps: EMAPS:1689428
Pattern: Not Specified
Stage: TS28
Assay Id: MGI:6191574
Age: postnatal day 14
Specimen Label: Table S2 - P14 - Wnt7b
Detected: true
Specimen Num: 6
GXD Expression    
Probe: MGI:6186883
Assay Type: RNA in situ
Annotation Date: 2018-07-25
Strength: Present
Sex: Male
Emaps: EMAPS:1689428
Pattern: Not Specified
Stage: TS28
Assay Id: MGI:6191574
Age: postnatal day 28
Specimen Label: Table S2 - P28 - Wnt7b
Detected: true
Specimen Num: 7
GXD Expression
Probe: MGI:3775186
Assay Type: Immunohistochemistry
Annotation Date: 2008-03-27
Strength: Present
Sex: Not Specified
Emaps: EMAPS:160331
Pattern: Not Specified
Stage: TS01
Assay Id: MGI:3775304
Age: embryonic day 0.5
Image: 6--Zyg
Note: The inability to amplify Wnt7b in RT-PCR reactions using material derived from this stage suggests that the observed expression on the cell surface and in the cytoplasm of zygotes is likely to be due to the presence of Wnt7a protein.
Specimen Label: 6--Zyg
Detected: true
Specimen Num: 4
GXD Expression
Probe: MGI:3775186
Assay Type: Immunohistochemistry
Annotation Date: 2008-03-27
Strength: Present
Sex: Female
Emaps: EMAPS:3102528
Pattern: Not Specified
Stage: TS28
Assay Id: MGI:3775304
Age: postnatal day 21
Image: 3
Note: The inability to amplify Wnt7b in RT-PCR reactions using material derived from this stage suggests that the observed expression is likely to be due to the presence of Wnt7a protein.
Specimen Label: 3
Detected: true
Specimen Num: 1
Publication
First Author: Yu F
Year: 2020
Journal: Stem Cells
Title: Wnt7b-induced Sox11 functions enhance self-renewal and osteogenic commitment of bone marrow mesenchymal stem cells.
Volume: 38
Issue: 8
Pages: 1020-1033
GXD Expression
Probe: MGI:3775186
Assay Type: Immunohistochemistry
Annotation Date: 2008-03-27
Strength: Present
Sex: Not Specified
Emaps: EMAPS:3102528
Pattern: Not Specified
Stage: TS28
Assay Id: MGI:3775304
Age: postnatal
Image: 6--FGO
Note: The inability to amplify Wnt7b in RT-PCR reactions using material derived from this stage suggests that the observed expression on the cell surface and in the cytoplasm of full grown oocytes is likely to be due to the presence of Wnt7a protein.
Specimen Label: 6--FGO
Detected: true
Specimen Num: 2
GXD Expression
Probe: MGI:3775186
Assay Type: Immunohistochemistry
Annotation Date: 2008-03-27
Strength: Present
Sex: Not Specified
Emaps: EMAPS:3102528
Pattern: Not Specified
Stage: TS28
Assay Id: MGI:3775304
Age: postnatal
Image: 6--OO
Note: The inability to amplify Wnt7b in RT-PCR reactions using material derived from this stage suggests that the observed expression on the cell surface and in the cytoplasm of ovulated oocytes is likely to be due to the presence of Wnt7a protein.
Specimen Label: 6--OO
Detected: true
Specimen Num: 3
Publication
First Author: Chen H
Year: 2019
Journal: FASEB J
Title: Increased glycolysis mediates Wnt7b-induced bone formation.
Volume: 33
Issue: 7
Pages: 7810-7821
Publication
First Author: Chen H
Year: 2021
Journal: FASEB J
Title: WNT7B overexpression rescues bone loss caused by glucocorticoids in mice.
Volume: 35
Issue: 7
Pages: e21683
Publication
First Author: Qin S
Year: 2012
Journal: J Am Soc Nephrol
Title: c-Met and NF-κB-dependent overexpression of Wnt7a and -7b and Pax2 promotes cystogenesis in polycystic kidney disease.
Volume: 23
Issue: 8
Pages: 1309-18
Publication
First Author: Stenman JM
Year: 2008
Journal: Science
Title: Canonical Wnt signaling regulates organ-specific assembly and differentiation of CNS vasculature.
Volume: 322
Issue: 5905
Pages: 1247-50
Publication
First Author: Abu-Khalil A
Year: 2004
Journal: J Comp Neurol
Title: Wnt genes define distinct boundaries in the developing human brain: implications for human forebrain patterning.
Volume: 474
Issue: 2
Pages: 276-88
Publication
First Author: Liu Y
Year: 2009
Journal: Development
Title: Coordinate integrin and c-Met signaling regulate Wnt gene expression during epithelial morphogenesis.
Volume: 136
Issue: 5
Pages: 843-53
Publication  
First Author: Lin JB
Year: 2018
Journal: Exp Eye Res
Title: WNT7A/B promote choroidal neovascularization.
Volume: 174
Pages: 107-112
Publication    
First Author: Shen C
Year: 2018
Journal: Elife
Title: Motoneuron Wnts regulate neuromuscular junction development.
Volume: 7
Publication
First Author: Griveau A
Year: 2018
Journal: Cancer Cell
Title: A Glial Signature and Wnt7 Signaling Regulate Glioma-Vascular Interactions and Tumor Microenvironment.
Volume: 33
Issue: 5
Pages: 874-889.e7
Publication
First Author: Tu X
Year: 2007
Journal: Dev Cell
Title: Noncanonical Wnt signaling through G protein-linked PKCdelta activation promotes bone formation.
Volume: 12
Issue: 1
Pages: 113-27
Publication    
First Author: Kuwahara A
Year: 2020
Journal: Elife
Title: Delineating the early transcriptional specification of the mammalian trachea and esophagus.
Volume: 9
Publication
First Author: Hu H
Year: 2005
Journal: Development
Title: Sequential roles of Hedgehog and Wnt signaling in osteoblast development.
Volume: 132
Issue: 1
Pages: 49-60
Publication
First Author: Cheng SL
Year: 2013
Journal: Arterioscler Thromb Vasc Biol
Title: Dkk1 and MSX2-Wnt7b signaling reciprocally regulate the endothelial-mesenchymal transition in aortic endothelial cells.
Volume: 33
Issue: 7
Pages: 1679-89
Publication
First Author: Zhou H
Year: 2008
Journal: J Biol Chem
Title: Osteoblasts directly control lineage commitment of mesenchymal progenitor cells through Wnt signaling.
Volume: 283
Issue: 4
Pages: 1936-45
Publication
First Author: Ueta E
Year: 2008
Journal: Congenit Anom (Kyoto)
Title: Altered signaling pathway in the dysmorphogenesis of telencephalon in the Gli3 depressed mouse embryo, Pdn/Pdn.
Volume: 48
Issue: 2
Pages: 74-80
Publication
First Author: Dufourcq P
Year: 2008
Journal: Am J Pathol
Title: Regulation of endothelial cell cytoskeletal reorganization by a secreted frizzled-related protein-1 and frizzled 4- and frizzled 7-dependent pathway: role in neovessel formation.
Volume: 172
Issue: 1
Pages: 37-49
Publication
First Author: Moulis M
Year: 2022
Journal: Sci Rep
Title: Identification and implication of tissue-enriched ligands in epithelial-endothelial crosstalk during pancreas development.
Volume: 12
Issue: 1
Pages: 12498
Publication  
First Author: Wang Y
Year: 2022
Journal: Development
Title: The WNT7A/WNT7B/GPR124/RECK signaling module plays an essential role in mammalian limb development.
Volume: 149
Issue: 9
Publication
First Author: Salazar KD
Year: 2009
Journal: Am J Physiol Lung Cell Mol Physiol
Title: Mesenchymal stem cells produce Wnt isoforms and TGF-beta1 that mediate proliferation and procollagen expression by lung fibroblasts.
Volume: 297
Issue: 5
Pages: L1002-11
Publication  
First Author: Davis EK
Year: 2008
Journal: Neural Dev
Title: Wnts acting through canonical and noncanonical signaling pathways exert opposite effects on hippocampal synapse formation.
Volume: 3
Pages: 32
Publication
First Author: Alfieri CM
Year: 2010
Journal: Dev Biol
Title: Wnt signaling in heart valve development and osteogenic gene induction.
Volume: 338
Issue: 2
Pages: 127-35
Publication
First Author: Ang SJ
Year: 2004
Journal: Gene Expr Patterns
Title: Spatial and temporal expression of Wnt and Dickkopf genes during murine lens development.
Volume: 4
Issue: 3
Pages: 289-95
Publication
First Author: Fotaki V
Year: 2011
Journal: J Comp Neurol
Title: Wnt/β-catenin signaling is disrupted in the extra-toes (Gli3(Xt/Xt) ) mutant from early stages of forebrain development, concomitant with anterior neural plate patterning defects.
Volume: 519
Issue: 9
Pages: 1640-57
Publication
First Author: Wang Y
Year: 2020
Journal: Cereb Cortex
Title: Transcription Factor 4 Safeguards Hippocampal Dentate Gyrus Development by Regulating Neural Progenitor Migration.
Volume: 30
Issue: 5
Pages: 3102-3115
Publication
First Author: Miller MF
Year: 2012
Journal: Proc Natl Acad Sci U S A
Title: Wnt ligands signal in a cooperative manner to promote foregut organogenesis.
Volume: 109
Issue: 38
Pages: 15348-53
Publication
First Author: Fenstermaker AG
Year: 2010
Journal: J Neurosci
Title: Wnt/planar cell polarity signaling controls the anterior-posterior organization of monoaminergic axons in the brainstem.
Volume: 30
Issue: 47
Pages: 16053-64
Publication
First Author: Cohen ED
Year: 2009
Journal: J Clin Invest
Title: Wnt signaling regulates smooth muscle precursor development in the mouse lung via a tenascin C/PDGFR pathway.
Volume: 119
Issue: 9
Pages: 2538-49
Publication
First Author: Yin Y
Year: 2011
Journal: Development
Title: Mesothelial- and epithelial-derived FGF9 have distinct functions in the regulation of lung development.
Volume: 138
Issue: 15
Pages: 3169-77
Publication
First Author: Snowball J
Year: 2015
Journal: Dev Biol
Title: Endodermal Wnt signaling is required for tracheal cartilage formation.
Volume: 405
Issue: 1
Pages: 56-70
Publication
First Author: Daneman R
Year: 2009
Journal: Proc Natl Acad Sci U S A
Title: Wnt/beta-catenin signaling is required for CNS, but not non-CNS, angiogenesis.
Volume: 106
Issue: 2
Pages: 641-6
Publication
First Author: Zaghetto AA
Year: 2007
Journal: J Neurosci
Title: Activation of the Wnt-beta catenin pathway in a cell population on the surface of the forebrain is essential for the establishment of olfactory axon connections.
Volume: 27
Issue: 36
Pages: 9757-68
Publication
First Author: Yu J
Year: 2009
Journal: Development
Title: A Wnt7b-dependent pathway regulates the orientation of epithelial cell division and establishes the cortico-medullary axis of the mammalian kidney.
Volume: 136
Issue: 1
Pages: 161-71
Publication
First Author: Theil T
Year: 2005
Journal: Dev Biol
Title: Gli3 is required for the specification and differentiation of preplate neurons.
Volume: 286
Issue: 2
Pages: 559-71
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First Author: Bohnenpoll T
Year: 2014
Journal: Dev Biol
Title: Canonical Wnt signaling regulates the proliferative expansion and differentiation of fibrocytes in the murine inner ear.
Volume: 391
Issue: 1
Pages: 54-65
Publication
First Author: Trowe MO
Year: 2012
Journal: Development
Title: Canonical Wnt signaling regulates smooth muscle precursor development in the mouse ureter.
Volume: 139
Issue: 17
Pages: 3099-108
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First Author: Singh I
Year: 2014
Journal: BMC Biol
Title: Hmga2 is required for canonical WNT signaling during lung development.
Volume: 12
Pages: 21
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