In vivo post-transcriptional regulation of GAP-43 mRNA by overexpression of the RNA-binding protein HuD.
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Competing Interactions of RNA-Binding Proteins, MicroRNAs, and Their Targets Control Neuronal Development and FunctionLimbic Encephalitis: Potential Impact of Adaptive Autoimmune Inflammation on Neuronal Circuits of the AmygdalaDegradation of high affinity HuD targets releases Kv1.1 mRNA from miR-129 repression by mTORC1HuD distribution changes in response to heat shock but not neurotrophic stimulationA p53-CBP/p300 transcription module is required for GAP-43 expression, axon outgrowth, and regenerationLocalization of organic cation/carnitine transporter (OCTN2) in cells forming the blood-brain barrier.Characterization of the proneural gene regulatory network during mouse telencephalon developmentNovel recognition motifs and biological functions of the RNA-binding protein HuD revealed by genome-wide identification of its targets.HuB/C/D, nPTB, REST4, and miR-124 regulators of neuronal cell identity are also utilized in the lens.HuD promotes BDNF expression in brain neurons via selective stabilization of the BDNF long 3'UTR mRNA.Opposite effects of acute ethanol exposure on GAP-43 and BDNF expression in the hippocampus versus the cerebellum of juvenile rats.Increased expression of axogenesis-related genes and mossy fibre length in dentate granule cells from adult HuD overexpressor mice.RNA-binding protein HuD controls insulin translationPositive feedback between RNA-binding protein HuD and transcription factor SATB1 promotes neurogenesisDiverse molecular functions of Hu proteins.KSRP modulation of GAP-43 mRNA stability restricts axonal outgrowth in embryonic hippocampal neurons.Schizophrenia-like GABAergic gene expression deficits in cerebellar Golgi cells from rats chronically exposed to low-dose phencyclidineAlterations in mossy fiber physiology and GAP-43 expression and function in transgenic mice overexpressing HuDMolecular determinants of the axonal mRNA transcriptome.Cytoplasmic RNA-binding proteins and the control of complex brain function.Emerging complexity of the HuD/ELAVl4 gene; implications for neuronal development, function, and dysfunctionHuD regulates the cpg15 expression via the 3'-UTR and AU-rich element.A Shift from a Pivotal to Supporting Role for the Growth-Associated Protein (GAP-43) in the Coordination of Axonal Structural and Functional Plasticity.Neuronal RNA-binding protein HuD regulates addiction-related gene expression and behavior.Unraveling the Pathways to Neuronal Homeostasis and Disease: Mechanistic Insights into the Role of RNA-Binding Proteins and Associated Factors
P2860
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P2860
In vivo post-transcriptional regulation of GAP-43 mRNA by overexpression of the RNA-binding protein HuD.
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2006 nî lūn-bûn
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2006年の論文
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2006年学术文章
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2006年学术文章
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name
In vivo post-transcriptional r ...... f the RNA-binding protein HuD.
@en
In vivo post-transcriptional r ...... f the RNA-binding protein HuD.
@nl
type
label
In vivo post-transcriptional r ...... f the RNA-binding protein HuD.
@en
In vivo post-transcriptional r ...... f the RNA-binding protein HuD.
@nl
prefLabel
In vivo post-transcriptional r ...... f the RNA-binding protein HuD.
@en
In vivo post-transcriptional r ...... f the RNA-binding protein HuD.
@nl
P2093
P2860
P1476
In vivo post-transcriptional r ...... f the RNA-binding protein HuD.
@en
P2093
Bernard Jasmin
Daniel C Tanner
Federico Bolognani
Julie Deschênes-Furry
Melissa Merhege
Nora I Perrone-Bizzozero
P2860
P304
P356
10.1111/J.1471-4159.2005.03607.X
P407
P577
2006-01-09T00:00:00Z