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Citations to this article

Canonical WNT signaling components in vascular development and barrier formation
Yulian Zhou, … , Makoto M. Taketo, Jeremy Nathans
Yulian Zhou, … , Makoto M. Taketo, Jeremy Nathans
Published August 1, 2014
Citation Information: J Clin Invest. 2014;124(9):3825-3846. https://doi.org/10.1172/JCI76431.
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Research Article Vascular biology Article has an altmetric score of 28

Canonical WNT signaling components in vascular development and barrier formation

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Abstract

Canonical WNT signaling is required for proper vascularization of the CNS during embryonic development. Here, we used mice with targeted mutations in genes encoding canonical WNT pathway members to evaluate the exact contribution of these components in CNS vascular development and in specification of the blood-brain barrier (BBB) and blood-retina barrier (BRB). We determined that vasculature in various CNS regions is differentially sensitive to perturbations in canonical WNT signaling. The closely related WNT signaling coreceptors LDL receptor–related protein 5 (LRP5) and LRP6 had redundant functions in brain vascular development and barrier maintenance; however, loss of LRP5 alone dramatically altered development of the retinal vasculature. The BBB in the cerebellum and pons/interpeduncular nuclei was highly sensitive to decrements in canonical WNT signaling, and WNT signaling was required to maintain plasticity of barrier properties in mature CNS vasculature. Brain and retinal vascular defects resulting from ablation of Norrin/Frizzled4 signaling were ameliorated by stabilizing β-catenin, while inhibition of β-catenin–dependent transcription recapitulated the vascular development and barrier defects associated with loss of receptor, coreceptor, or ligand, indicating that Norrin/Frizzled4 signaling acts predominantly through β-catenin–dependent transcriptional regulation. Together, these data strongly support a model in which identical or nearly identical canonical WNT signaling mechanisms mediate neural tube and retinal vascularization and maintain the BBB and BRB.

Authors

Yulian Zhou, Yanshu Wang, Max Tischfield, John Williams, Philip M. Smallwood, Amir Rattner, Makoto M. Taketo, Jeremy Nathans

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Frontiers in physiology 2020
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Scientific Reports 2020
The influence of circadian rhythms and aerobic glycolysis in autism spectrum disorder
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Translational Psychiatry 2020
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Cell Death and Disease 2020
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Handbook of experimental pharmacology 2020
Identification of diverse tumor endothelial cell populations in malignant glioma
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Development (Cambridge, England) 2020
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eLife 2020
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Bioorganic & Medicinal Chemistry Letters 2020
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Aging 2020
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BMC Medical Genetics 2020
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Physiological reviews 2019
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The FASEB Journal 2019
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eLife 2019
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Nature Neuroscience 2019
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eLife 2019
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Scientific Reports 2019
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Arteriosclerosis, thrombosis, and vascular biology 2019
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Endothelial Cell–Specific Inactivation of TSPAN12 (Tetraspanin 12) Reveals Pathological Consequences of Barrier Defects in an Otherwise Intact Vasculature
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Arteriosclerosis, thrombosis, and vascular biology 2018
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BioMed Research International 2018
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Journal of Cerebral Blood Flow & Metabolism 2018
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Circulation research 2018
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Acta Neuropathologica 2018
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Experimental Eye Research 2018
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Frontiers in cellular neuroscience 2018
Macrophage stimulating protein preserves blood brain barrier integrity after intracerebral hemorrhage through recepteur d'origine nantais dependent GAB1/Src/β-catenin pathway activation in a mouse model
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Journal of Neurochemistry 2018
Fine Tuning of Sox17 and Canonical Wnt Coordinates the Permeability Properties of the Blood-Brain Barrier
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Circulation research 2018
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Proceedings of the National Academy of Sciences 2018
A RECK-WNT7 Receptor-Ligand Interaction Enables Isoform-Specific Regulation of Wnt Bioavailability.
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Cell Reports 2018
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Tata M, Ruhrberg C
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Oncology Letters 2018
Endothelial Wnt/β-catenin signaling reduces immune cell infiltration in multiple sclerosis
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Proceedings of the National Academy of Sciences 2017
The Wnt Inhibitor Apcdd1 Coordinates Vascular Remodeling and Barrier Maturation of Retinal Blood Vessels
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Neuron 2017
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Up-regulation of Wnt/β-catenin expression is accompanied with vascular repair after traumatic brain injury
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Journal of Cerebral Blood Flow & Metabolism 2017
Aerobic Glycolysis Hypothesis Through WNT/Beta-Catenin Pathway in Exudative Age-Related Macular Degeneration
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Journal of Molecular Neuroscience 2017
Animal models of ocular angiogenesis: from development to pathologies
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The FASEB Journal 2017
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Vision research 2017
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Pharmacological reviews 2017
Defects in the Cell Signaling Mediator β-Catenin Cause the Retinal Vascular Condition FEVR
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The American Journal of Human Genetics 2017
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Nature Medicine 2017
Gradual Suppression of Transcytosis Governs Functional Blood-Retinal Barrier Formation
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Neuron 2017
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Developmental Biology 2017
Blood-Brain Barrier Permeability Is Regulated by Lipid Transport-Dependent Suppression of Caveolae-Mediated Transcytosis
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Neuron 2017
TSPAN12 Is a Norrin Co-receptor that Amplifies Frizzled4 Ligand Selectivity and Signaling
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Cell Reports 2017
Norrin-induced Frizzled4 endocytosis and endo-lysosomal trafficking control retinal angiogenesis and barrier function
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Nature Communications 2017
Reck and Gpr124 Are Essential Receptor Cofactors for Wnt7a/Wnt7b-Specific Signaling in Mammalian CNS Angiogenesis and Blood-Brain Barrier Regulation
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Neuron 2017
Cerebral Vein Malformations Result from Loss of Twist1 Expression and BMP Signaling from Skull Progenitor Cells and Dura
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Targeting WNT Signaling for Multifaceted Glioblastoma Therapy
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Frontiers in cellular neuroscience 2017
Differential Effects of Retinoic Acid Concentrations in Regulating Blood–Brain Barrier Properties
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eNeuro 2017
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Oncotarget 2017
Effect of Long-term In Vitro Lithium Exposure on mRNA Levels of Claudin-3, CYP1A1, ABCG2 and GSTM3 Genes in the hCMEC/D3 Human Brain Endothelial Cell Line.
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European Journal of Drug Metabolism and Pharmacokinetics 2017
Pharmacologic Activation of Wnt Signaling by Lithium Normalizes Retinal Vasculature in a Murine Model of Familial Exudative Vitreoretinopathy
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The American Journal of Pathology 2016
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Nature Communications 2016
Neurovascular cross talk in diabetic retinopathy: Pathophysiological roles and therapeutic implications
EP Moran, Z Wang, J Chen, P Sapieha, LE Smith, J Ma
American journal of physiology. Heart and circulatory physiology 2016
Norrin/Frizzled4 signalling in the preneoplastic niche blocks medulloblastoma initiation: ( A ) Representative immunostains for Collagen IV (ColIV) counterstained with hematoxylin, to depict non-vascularized (red outline) and vascularized (green outline) lesions from 37 Ptch +/− mouse cerebellar lesions sampled by serial sections at P14. ( B ) Boxplot showing statistically larger volume in P14 Ptch +/− lesions assigned as vascularized versus those assigned as non-vascularized, based on immunostaining serial sections of each lesion for ColIV. ( C ) Schematic illustrating the machinery required for Norrin activation of β-catenin (β-cat)/T-cell factor (TCF)-dependent transcription via the Fzd4 receptor and Lrp5 and Tspan12 co-receptors. ( D ) X-gal staining (blue) of sagittally sectioned cerebella from male Ndp -/y mice carrying an Ndp-lacZ KO allele, at the ages indicated. Bottom row, combined X-gal staining and immunohistochemistry (IHC, brown) for phospho-histone H3 (PH3), Pax6, and myelin basic protein (MBP). ( E ) Box plot of qRT-PCR analysis of Ndp expression in mouse Ptch +/− purified GNPs and MB lysate from symptomatic animals ranging in age from 3 to 10 months. ( F ) Box plot of NDP expression obtained by array profiling of human cerebella and two different cohorts (Boston, left; Toronto, right) of human MB samples, categorized by molecular subgroup. ( G ) Kaplan-Meier survival curve illustrating overall survival of Shh-MB patients with high versus low NDP expression. EGL, external granule layer; GNP, granule neuron progenitor; PCL, Purkinje cell layer; ML, molecular layer; WM, white matter; IGL, internal granule layer; CB, cerebellum; MB, medulloblastoma. Scale bars, 100 µm
EA Bassett, N Tokarew, EA Allemano, C Mazerolle, K Morin, AJ Mears, B McNeill, R Ringuette, C Campbell, S Smiley, NT Pokrajac, AM Dubuc, V Ramaswamy, PA Northcott, M Remke, PP Monnier, D Potter, K Paes, LL Kirkpatrick, KJ Coker, DS Rice, C Perez-Iratxeta, MD Taylor, VA Wallace
eLife 2016
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International journal of molecular sciences 2016
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Nature Medicine 2016
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Developmental Biology 2016
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The Journal of neuroscience : the official journal of the Society for Neuroscience 2016
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PloS one 2016
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Investigative ophthalmology & visual science 2016
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Nature Communications 2016
Current Topics in Developmental Biology
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Current topics in developmental biology 2016
Tankyrase Inhibitor Sensitizes Lung Cancer Cells to Endothelial Growth Factor Receptor (EGFR) Inhibition via Stabilizing Angiomotins and Inhibiting YAP Signaling
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Frontiers in Cell and Developmental Biology 2016
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eLife 2016
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The Journal of neuroscience : the official journal of the Society for Neuroscience 2016
Endothelial β-Catenin Signaling Is Required for Maintaining Adult Blood–Brain Barrier Integrity and Central Nervous System HomeostasisCLINICAL PERSPECTIVE
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Circulation 2015
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S Tietz, B Engelhardt
The Journal of Cell Biology 2015
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M Tata, C Ruhrberg, A Fantin
Mechanisms of Development 2015
Establishment and Dysfunction of the Blood-Brain Barrier
Z Zhao, AR Nelson, C Betsholtz, BV Zlokovic
Cell 2015
The evolving roles of pericyte in early brain injury after subarachnoid hemorrhage
Y Chen, Q Li, J Tang, H Feng, JH Zhang
Brain Research 2015
The Molecular Constituents of the Blood–Brain Barrier
BW Chow, C Gu
Trends in Neurosciences 2015
GPR124 Functions as a WNT7-Specific Coactivator of Canonical β-Catenin Signaling
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Cell Reports 2015
Tip cell-specific requirement for an atypical Gpr124- and Reck-dependent Wnt/β-catenin pathway during brain angiogenesis: ( A ) Schematic representation of Gpr124 structure and TALEN target site locations corresponding to gpr124 s984 and gpr124 s985 alleles. LRR: leucine-rich repeats; LRRCT: leucine-rich repeat C-terminal domain; Ig: Ig-like domain; HBD: hormone binding domain; GAIN: GPCR-autoproteolysis inducing domain; GPS: GPCR proteolysis site; PBD: PDZ binding domain. ( B ) Lateral views of wild-type, gpr124 s984/s984 and gpr124 s985/s985 larvae at 5 dpf. ( C ) Lateral views of wild-type, gpr124 s984/s984 and gpr124 s985/s985 Tg(kdrl:GFP) embryos at 36 hpf (hindbrain region, upper panels) and 24 hpf (trunk region, bottom panels). MCeV: middle cerebral vein. Scale bar, 50 µm. ( D ) Maximal intensity projection of a confocal z -stack of the cranial vasculature of Tg(kdrl:GFP) wild-type and gpr124 s984/s984 embryos at 60 hpf in dorsal views (anterior to the left) and wire diagram of the brain vasculature in lateral (middle panels) and dorso-lateral (bottom panels) views. Red vessels in the 3D renderings represent the intra-cerebral central arteries (CtAs), blue vessels represent the extra-cerebral connections between the PHBC and BA lining the hindbrain ventrally, and gray vessels represent the perineural vessels (PHBC, PMBC, BA, and PCS) to which the central arteries connect in wild-type embryos. Scale bar, 100 μm. ( E ) Quantification of hindbrain CtAs upon Gpr124 depletion in 60 hpf embryos. ( F ) Quantification of hindbrain CtAs in control and gpr124 morphants at 60 hpf after injection at the one-cell stage of 100 pg RNA encoding the depicted receptors or Gpr124/Gpr125 hybrid receptors. ( G ) Vasculature of wild-type and gpr124 mutant adults. Single plane confocal image of the vascular network (upper panels: scale bar, 100 µm) and immunostaining for Slc2a1 and Pgp in sections through the optic tectum (middle panels: scale bars, 20 µm). Evaluation of the optic tectum and liver vessel permeability by fluorescent streptavidin labelling (red signal) 60 min after intracardial injection of sulfo-NHS-biotin in live animals (bottom panels; scale bar, 20 µm). In all panels, values represent means ± SD (*p < 0.05; **p < 0.01; Kruskal–Wallis test). Morpholino and RNA injections were performed as described in ‘Methods’
B Vanhollebeke, OA Stone, N Bostaille, C Cho, Y Zhou, E Maquet, A Gauquier, P Cabochette, S Fukuhara, N Mochizuki, J Nathans, DY Stainier
eLife 2015
Reck enables cerebrovascular development by promoting canonical Wnt signaling
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Development (Cambridge, England) 2015
The Intracellular Loop 2 F328S Frizzled-4 Mutation Implicated in Familial Exudative Vitreoretinopathy Impairs Dishevelled Recruitment.
Pau MS, Gao S, Malbon CC, Wang HY, Bertalovitz AC
Journal of molecular signaling 2015
VE-cadherin cleavage by ovarian cancer microparticles induces β-catenin phosphorylation in endothelial cells
Thawadi HA, Abu-Kaoud N, Farsi HA, Hoarau-Véchot J, Rafii S, Rafii A, Pasquier J
Oncotarget 2015
Gpr124 Controls CNS Angiogenesis and Blood-Brain Barrier Integrity by Promoting Ligand-Specific Canonical Wnt Signaling
Y Zhou, J Nathans
Developmental Cell 2014
Dissecting gene expression at the blood-brain barrier
MA Huntley, N Bien-Ly, R Daneman, RJ Watts
Frontiers in neuroscience 2014
The Role of the Hypoxia Response in Shaping Retinal Vascular * Development in the Absence of Norrin/Frizzled4 Signaling
A Rattner, Y Wang, Y Zhou, J Williams, J Nathans
Investigative ophthalmology & visual science 2014
Pulmonary surfactant: an immunological perspective
ZC Chroneos, Z Sever-Chroneos, VL Shepherd
Cellular physiology and biochemistry : international journal of experimental cellular physiology, biochemistry, and pharmacology 2009

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