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Neddylation inhibition impairs spine development, destabilizes synapses and deteriorates cognition.

Annette M Vogl | Marisa M Brockmann | Sebastian A Giusti | Giuseppina Maccarrone | Claudia A Vercelli | Corinna A Bauder | Julia S Richter | Francesco Roselli | Anne-Sophie Hafner | Nina Dedic | Carsten T Wotjak | Daniela M Vogt-Weisenhorn | Daniel Choquet | Christoph W Turck | Valentin Stein | Jan M Deussing | Damian Refojo
Nature neuroscience | 2015

Neddylation is a ubiquitylation-like pathway that controls cell cycle and proliferation by covalently conjugating Nedd8 to specific targets. However, its role in neurons, nonreplicating postmitotic cells, remains unexplored. Here we report that Nedd8 conjugation increased during postnatal brain development and is active in mature synapses, where many proteins are neddylated. We show that neddylation controls spine development during neuronal maturation and spine stability in mature neurons. We found that neddylated PSD-95 was present in spines and that neddylation on Lys202 of PSD-95 is required for the proactive role of the scaffolding protein in spine maturation and synaptic transmission. Finally, we developed Nae1(CamKIIα-CreERT2) mice, in which neddylation is conditionally ablated in adult excitatory forebrain neurons. These mice showed synaptic loss, impaired neurotransmission and severe cognitive deficits. In summary, our results establish neddylation as an active post-translational modification in the synapse regulating the maturation, stability and function of dendritic spines.

Pubmed ID: 25581363

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International Mouse Phenotyping Consortium (IMPC) (tool)

RRID:SCR_006158

Center that produces knockout mice and carries out high-throughput phenotyping of each line in order to determine function of every gene in mouse genome. These mice will be preserved in repositories and made available to scientific community representing valuable resource for basic scientific research as well as generating new models for human diseases.

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