Mir-132/212 is required for maturation of binocular matching of orientation preference and depth perception
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Summary
It is shown that miR-132/212 regulates the expression of genes involved in visual cortex maturation, and that mice lack miR/212 show deficits in binocular matching of orientation preferences, which leads to impaired depth perception.
- Type
- article
- Published
- 2017-05-23
- Cited by
- 43
- References
- 71
- Access
- Open access
- OpenAlex
- https://openalex.org/W2619566042
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:1335534
Keywords
Visual cortex, Neuroscience, Biology, Forebrain, Receptive field
References
- Clock Genes Control Cortical Critical Period Timing
- miR-132, an experience-dependent microRNA, is essential for visual cortex plasticity
- Rett syndrome is caused by mutations in X-linked MECP2, encoding methyl-CpG-binding protein 2
- Cortex-restricted disruption of NMDAR1 impairs neuronal patterns in the barrel cortex
- Loss of Arc renders the visual cortex impervious to the effects of sensory experience or deprivation
- DNA Microarrays and Gene Expression - From Experiments to Data Analysis and Modeling
- A cAMP-response element binding protein-induced microRNA regulates neuronal morphogenesis.
- Dynamic DNA methylation in the brain: a new epigenetic mark for experience-dependent plasticity
- Responses of Macaque V1 Neurons to Binocular Orientation Differences
- The visual physiology of the wild type mouse determined with pattern VEPs.
- Plasticity of Binocularity and Visual Acuity Are Differentially Limited by Nogo Receptor
- Memory formation and retention are affected in adult miR-132/212 knockout mice.
- Differential regulation of mature and precursor microRNA expression by NMDA and metabotropic glutamate receptor activation during LTP in the adult dentate gyrus in vivo
- The emergence of functional microcircuits in visual cortex
- Contrast gain control and cortical TrkB signaling shape visual acuity
- Classifying simple and complex cells on the basis of response modulation.
- Haploinsufficiency of the GPD2 gene in a patient with nonsyndromic mental retardation
- MicroRNAs: Small molecules with big roles in neurodevelopment and diseases
- MicroRNA212/132 family: molecular transducer of neuronal function and plasticity.
- Environmental Enrichment Rescues Binocular Matching of Orientation Preference in Mice that Have a Precocious Critical Period
Cited by
- A Systematic Look at Environmental Modulation and Its Impact in Brain Development.
- Supplemental Treatment for Huntington’s Disease with miR-132 that Is Deficient in Huntington’s Disease Brain
- The tetrapartite synapse: a key concept in the pathophysiology of schizophrenia
- Downregulation of splicing regulator RBFOX1 compromises visual depth perception
- miR-132/212 is induced by stress and its dysregulation triggers anxiety-related behavior
- Pericyte loss leads to circulatory failure and pleiotrophin depletion causing neuron loss
- Circ-camk4 involved in cerebral ischemia/reperfusion induced neuronal injury
- MicroRNAs as regulators of brain function and targets for treatment of epilepsy
- Interplay between Metabolism, Nutrition and Epigenetics in Shaping Brain DNA Methylation, Neural Function and Behavior
- Running towards amblyopia recovery
- MiR‐29 coordinates age‐dependent plasticity brakes in the adult visual cortex
- Neuroplasticity of the visual cortex: in sickness and in health.
- Binocular disparity: Neural mechanisms and perceptual learning
- Visual Cortex: Binocular Matchmaking.
- Upregulation of Extracellular Vesicles-Encapsulated miR-132 Released From Mesenchymal Stem Cells Attenuates Ischemic Neuronal Injury by Inhibiting Smad2/c-jun Pathway via Acvr2b Suppression
- Circulating Soluble ACE2 and Upstream microRNA Expressions in Serum of Type 2 Diabetes Mellitus Patients
- Contribution of M-opsin-based color vision to refractive development in mice.
- MicroRNAs in the Onset of Schizophrenia
- Closing the Critical Period Is Required for the Maturation of Binocular Integration in Mouse Primary Visual Cortex
- Phenotypic Alterations in Cortical Organization and Connectivity across Different Time Scales
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