Wnt/planar cell polarity signaling controls the anterior-posterior organization of monoaminergic axons in the brainstem
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Frizzled3 controls axonal development in distinct populations of cranial and spinal motor neuronsFrizzled3 is required for the development of multiple axon tracts in the mouse central nervous systemSubset specification of central serotonergic neuronsAxon guidance and injury-lessons from Wnts and Wnt signalingPCP Signaling between Migrating Neurons and their Planar-Polarized Neuroepithelial Environment Controls Filopodial Dynamics and Directional MigrationVANG-1 and PRKL-1 cooperate to negatively regulate neurite formation in Caenorhabditis elegansFrizzled Receptors in Development and DiseaseBiological functions of macrophage-derived Wnt5a, and its roles in human diseasesInternational Union of Basic and Clinical Pharmacology. XCIV. Adhesion G protein-coupled receptorsPrickle1 is expressed in distinct cell populations of the central nervous system and contributes to neuronal morphogenesisAntagonistic functions of Dishevelleds regulate Frizzled3 endocytosis via filopodia tips in Wnt-mediated growth cone guidanceWnt5a regulates midbrain dopaminergic axon growth and guidanceSFRP1 and SFRP2 dose-dependently regulate midbrain dopamine neuron development in vivo and in embryonic stem cellsFrizzled3 is required for neurogenesis and target innervation during sympathetic nervous system developmentMesodiencephalic dopaminergic neuronal differentiation does not involve GLI2A-mediated SHH-signaling and is under the direct influence of canonical WNT signaling.Ryk regulates Wnt5a repulsion of mouse corticospinal tract through modulating planar cell polarity signalingThe Wnt receptor Ryk is a negative regulator of mammalian dendrite morphogenesisGenetic evidence that Celsr3 and Celsr2, together with Fzd3, regulate forebrain wiring in a Vangl-independent mannerDifferential expression of Wnts after spinal cord contusion injury in adult rats.Regulation of the protocadherin Celsr3 gene and its role in globus pallidus development and connectivity.Spatiotemporal expression of repulsive guidance molecules (RGMs) and their receptor neogenin in the mouse brain.Understanding cadherin EGF LAG seven-pass G-type receptors.Identification of amacrine subtypes that express the atypical cadherin celsr3Activation of the Wnt/planar cell polarity pathway is required for pericyte recruitment during pulmonary angiogenesis.A fully human inhibitory monoclonal antibody to the Wnt receptor RYKShh signaling guides spatial pathfinding of raphespinal tract axons by multidirectional repulsionWNTs in synapse formation and neuronal circuitry.Reinduced Wnt signaling limits regenerative potential of sensory axons in the spinal cord following conditioning lesion.Dishevelled attenuates the repelling activity of Wnt signaling during neurite outgrowth in Caenorhabditis elegans.Dissection and culture of mouse dopaminergic and striatal explants in three-dimensional collagen matrix assaysWnt-Frizzled/planar cell polarity signaling: cellular orientation by facing the wind (Wnt)Abnormal epigenetic regulation of the gene expression levels of Wnt2b and Wnt7b: Implications for neural tube defectsAxon Guidance Molecules and Neural Circuit Remodeling After Spinal Cord Injury.Remodelling of spared proprioceptive circuit involving a small number of neurons supports functional recovery.Sonic hedgehog and Wnt: antagonists in morphogenesis but collaborators in axon guidance.Lack of serotonin reuptake during brain development alters rostral raphe-prefrontal network formation.Cells must express components of the planar cell polarity system and extracellular matrix to support cytonemes.Mest/Peg1 Is Essential for the Development and Maintenance of a SNc Neuronal Subset.Evidence for opposing roles of Celsr3 and Vangl2 in glutamatergic synapse formation.EphrinA5 Signaling Is Required for the Distinctive Targeting of Raphe Serotonin Neurons in the Forebrain.
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P2860
Wnt/planar cell polarity signaling controls the anterior-posterior organization of monoaminergic axons in the brainstem
description
2010 թուականի Նոյեմբերին հրատարակուած գիտական յօդուած
@hyw
2010 թվականի նոյեմբերին հրատարակված գիտական հոդված
@hy
artículu científicu espublizáu en 2010
@ast
im November 2010 veröffentlichter wissenschaftlicher Artikel
@de
scientific journal article
@en
vedecký článok (publikovaný 2010/11/24)
@sk
vědecký článek publikovaný v roce 2010
@cs
wetenschappelijk artikel (gepubliceerd op 2010/11/24)
@nl
наукова стаття, опублікована в листопаді 2010
@uk
مقالة علمية نشرت في 24-11-2010 حول موضوع: دماغ
@ar
name
Wnt/planar cell polarity signa ...... inergic axons in the brainstem
@ast
Wnt/planar cell polarity signa ...... inergic axons in the brainstem
@en
Wnt/planar cell polarity signa ...... inergic axons in the brainstem
@nl
type
label
Wnt/planar cell polarity signa ...... inergic axons in the brainstem
@ast
Wnt/planar cell polarity signa ...... inergic axons in the brainstem
@en
Wnt/planar cell polarity signa ...... inergic axons in the brainstem
@nl
prefLabel
Wnt/planar cell polarity signa ...... inergic axons in the brainstem
@ast
Wnt/planar cell polarity signa ...... inergic axons in the brainstem
@en
Wnt/planar cell polarity signa ...... inergic axons in the brainstem
@nl
P2093
P2860
P50
P921
P3181
P1476
Wnt/planar cell polarity signa ...... inergic axons in the brainstem
@en
P2093
Ahmad Bechara
Ali G Fenstermaker
Andre Goffinet
Youri Adolfs
P2860
P304
16053-16064
P3181
P356
10.1523/JNEUROSCI.4508-10.2010
P407
P577
2010-11-01T00:00:00Z