Literature DB >> 25913861

A Cdh1-APC/FMRP Ubiquitin Signaling Link Drives mGluR-Dependent Synaptic Plasticity in the Mammalian Brain.

Ju Huang1, Yoshiho Ikeuchi1, Marcos Malumbres2, Azad Bonni3.   

Abstract

Deregulation of synaptic plasticity may contribute to the pathogenesis of developmental cognitive disorders. In particular, exaggerated mGluR-dependent LTD is featured in fragile X syndrome, but the mechanisms that regulate mGluR-LTD remain incompletely understood. We report that conditional knockout of Cdh1, the key regulatory subunit of the ubiquitin ligase Cdh1-anaphase-promoting complex (Cdh1-APC), profoundly impairs mGluR-LTD in the hippocampus. Mechanistically, we find that Cdh1-APC operates in the cytoplasm to drive mGluR-LTD. We also identify the fragile X syndrome protein FMRP as a substrate of Cdh1-APC. Endogenous Cdh1-APC forms a complex with endogenous FMRP, and knockout of Cdh1 impairs mGluR-induced ubiquitination and degradation of FMRP in the hippocampus. Knockout of FMRP suppresses, and expression of an FMRP mutant protein that fails to interact with Cdh1 phenocopies, the Cdh1 knockout phenotype of impaired mGluR-LTD. These findings define Cdh1-APC and FMRP as components of a novel ubiquitin signaling pathway that regulates mGluR-LTD in the brain.
Copyright © 2015 Elsevier Inc. All rights reserved.

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Year:  2015        PMID: 25913861      PMCID: PMC4492466          DOI: 10.1016/j.neuron.2015.03.049

Source DB:  PubMed          Journal:  Neuron        ISSN: 0896-6273            Impact factor:   17.173


  42 in total

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Authors:  T V Bliss; G L Collingridge
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Review 9.  The mGluR theory of fragile X mental retardation.

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  33 in total

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Review 4.  Ubiquitylation at the crossroads of development and disease.

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7.  Dynamic Control of Dendritic mRNA Expression by CNOT7 Regulates Synaptic Efficacy and Higher Cognitive Function.

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Review 8.  Pausing on Polyribosomes: Make Way for Elongation in Translational Control.

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Review 10.  Ubiquitin-Dependent Regulation of Stem Cell Biology.

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