RNA-binding proteins and translational regulation in axons and growth cones.
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Learning and behavioral deficits associated with the absence of the fragile X mental retardation protein: what a fly and mouse model can teach us.Post-transcriptional regulation in corticogenesis: how RNA-binding proteins help build the brainThe FMRP regulon: from targets to disease convergenceAlternative polyadenylation in the nervous system: to what lengths will 3' UTR extensions take us?The RNA Binding Protein Igf2bp1 Is Required for Zebrafish RGC Axon Outgrowth In VivoGrowth Cone Localization of the mRNA Encoding the Chromatin Regulator HMGN5 Modulates Neurite Outgrowth.Axonal microRNAs: localization, function and regulatory mechanism during axon developmentThe RNA-centred view of the synapse: non-coding RNAs and synaptic plasticityThe central dogma decentralized: new perspectives on RNA function and local translation in neurons.The RNA binding protein RBPMS is a selective marker of ganglion cells in the mammalian retinaSuper-Resolution Microscopy Reveals Presynaptic Localization of the ALS/FTD Related Protein FUS in Hippocampal Neurons.Isolation and analyses of axonal ribonucleoprotein complexesImpaired activity-dependent neural circuit assembly and refinement in autism spectrum disorder genetic models.MicroRNAs in brain development and function: a matter of flexibility and stability.Regulation of mRNA transport, localization and translation in the nervous system of mammals (Review).Switching responses: spatial and temporal regulators of axon guidance.microRNAs in axon guidanceHermes Regulates Axon Sorting in the Optic Tract by Post-Trancriptional Regulation of Neuropilin 1IMP2 axonal localization, RNA interactome, and function in the development of axon trajectories.What, where, and when: the importance of post-transcriptional regulation in the brain.Techniques for Single-Molecule mRNA Imaging in Living Cells.Mitochondria coordinate sites of axon branching through localized intra-axonal protein synthesisDrosophila Shep and C. elegans SUP-26 are RNA-binding proteins that play diverse roles in nervous system development.HuD and the Survival Motor Neuron Protein Interact in Motoneurons and Are Essential for Motoneuron Development, Function, and mRNA Regulation.A new cis-acting motif is required for the axonal SMN-dependent Anxa2 mRNA localization.Axonal ribosomes and mRNAs associate with fragile X granules in adult rodent and human brains.TDP-43 binds and transports G-quadruplex-containing mRNAs into neurites for local translation.Morphoregulatory functions of the RNA-binding motif protein 3 in cell spreading, polarity and migration.
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P2860
RNA-binding proteins and translational regulation in axons and growth cones.
description
article científic
@ca
article scientifique
@fr
articol științific
@ro
articolo scientifico
@it
artigo científico
@gl
artigo científico
@pt
artigo científico
@pt-br
artikel ilmiah
@id
artikull shkencor
@sq
artículo científico
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name
RNA-binding proteins and translational regulation in axons and growth cones.
@en
type
label
RNA-binding proteins and translational regulation in axons and growth cones.
@en
prefLabel
RNA-binding proteins and translational regulation in axons and growth cones.
@en
P2860
P356
P1476
RNA-binding proteins and translational regulation in axons and growth cones.
@en
P2860
P356
10.3389/FNINS.2013.00081
P577
2013-05-23T00:00:00Z