Literature DB >> 22190461

CPG15 regulates synapse stability in the developing and adult brain.

Tadahiro Fujino1, Jennifer H Leslie, Ronen Eavri, Jerry L Chen, Walter C Lin, Genevieve H Flanders, Erzsebet Borok, Tamas L Horvath, Elly Nedivi.   

Abstract

Use-dependent selection of optimal connections is a key feature of neural circuit development and, in the mature brain, underlies functional adaptation, such as is required for learning and memory. Activity patterns guide circuit refinement through selective stabilization or elimination of specific neuronal branches and synapses. The molecular signals that mediate activity-dependent synapse and arbor stabilization and maintenance remain elusive. We report that knockout of the activity-regulated gene cpg15 in mice delays developmental maturation of axonal and dendritic arbors visualized by anterograde tracing and diolistic labeling, respectively. Electrophysiology shows that synaptic maturation is also delayed, and electron microscopy confirms that many dendritic spines initially lack functional synaptic contacts. While circuits eventually develop, in vivo imaging reveals that spine maintenance is compromised in the adult, leading to a gradual attrition in spine numbers. Loss of cpg15 also results in poor learning. cpg15 knockout mice require more trails to learn, but once they learn, memories are retained. Our findings suggest that CPG15 acts to stabilize active synapses on dendritic spines, resulting in selective spine and arbor stabilization and synaptic maturation, and that synapse stabilization mediated by CPG15 is critical for efficient learning.
© 2011 by Cold Spring Harbor Laboratory Press

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Year:  2011        PMID: 22190461      PMCID: PMC3248687          DOI: 10.1101/gad.176172.111

Source DB:  PubMed          Journal:  Genes Dev        ISSN: 0890-9369            Impact factor:   11.361


  59 in total

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Review 2.  Synapse elimination in the central nervous system.

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3.  A dynamic zone defines interneuron remodeling in the adult neocortex.

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4.  Synaptogenic proteins and synaptic organizers: "many hands make light work".

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Review 5.  Dendritic spine dynamics.

Authors:  D Harshad Bhatt; Shengxiang Zhang; Wen-Biao Gan
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Review 6.  Signaling mechanisms linking neuronal activity to gene expression and plasticity of the nervous system.

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Authors:  Jennifer H Leslie; Elly Nedivi
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  29 in total

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2.  Rem2 is an activity-dependent negative regulator of dendritic complexity in vivo.

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Review 3.  Neural architecture: from cells to circuits.

Authors:  Sarah E V Richards; Stephen D Van Hooser
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Review 4.  Functions and the related signaling pathways of the neurotrophic factor neuritin.

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Review 5.  Npas4: Linking Neuronal Activity to Memory.

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Review 6.  Activity-Regulated Transcription: Bridging the Gap between Neural Activity and Behavior.

Authors:  Ee-Lynn Yap; Michael E Greenberg
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7.  Axonal localization of neuritin/CPG15 mRNA in neuronal populations through distinct 5' and 3' UTR elements.

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8.  Exercise dependent increase in axon regeneration into peripheral nerve grafts by propriospinal but not sensory neurons after spinal cord injury is associated with modulation of regeneration-associated genes.

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9.  Aberrant development and plasticity of excitatory visual cortical networks in the absence of cpg15.

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10.  The Role of Neurotrophins in Major Depressive Disorder.

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