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) ...
The purpose of this dissertation is to bring a greater understanding of the trafficking and function...
Ubiquitin-dependent proteolysis is a major mechanism that downregulates misfolded proteins or those ...
A major interest in developmental neuroscience is to understand the cellular and molecular mechanism...
Neddylation is a ubiquitylation-like pathway that controls cell cycle and proliferation by covalentl...
Post-translational modifications, like phosphorylation, ubiquitylation, and sumoylation, have been s...
This thesis shows that the post-translational protein modification Nedd8 is active in the brain and ...
Protein ubiquitination is one of the core regulatory post-translational modification in neuronal dev...
Correct ontogeny of the nervous system is reliant upon exquisite regulation of exogenous growth fact...
Ubiquitin ligases of the Nedd4 family are important for axon and den-drite development, but little i...
Neddylation is the post-translational protein modification most closely related to ubiquitination. W...
Protein ubiquitination is a core regulatory determinant of neural development. Previous studies have...
The branching of dendrites and axons is a key determinant of neural circuit formation. In this issue...
Protein ubiquitination is a core regulatory principle in neuronal development. In this study, I used...
Ubiquitination of proteins by the Nedd4 family of ubiquitin ligases is a significant mechanism in pr...
SummaryNedd4-1 is a “neuronal precursor cell expressed and developmentally downregulated protein” an...
The purpose of this dissertation is to bring a greater understanding of the trafficking and function...
Ubiquitin-dependent proteolysis is a major mechanism that downregulates misfolded proteins or those ...
A major interest in developmental neuroscience is to understand the cellular and molecular mechanism...
Neddylation is a ubiquitylation-like pathway that controls cell cycle and proliferation by covalentl...
Post-translational modifications, like phosphorylation, ubiquitylation, and sumoylation, have been s...
This thesis shows that the post-translational protein modification Nedd8 is active in the brain and ...
Protein ubiquitination is one of the core regulatory post-translational modification in neuronal dev...
Correct ontogeny of the nervous system is reliant upon exquisite regulation of exogenous growth fact...
Ubiquitin ligases of the Nedd4 family are important for axon and den-drite development, but little i...
Neddylation is the post-translational protein modification most closely related to ubiquitination. W...
Protein ubiquitination is a core regulatory determinant of neural development. Previous studies have...
The branching of dendrites and axons is a key determinant of neural circuit formation. In this issue...
Protein ubiquitination is a core regulatory principle in neuronal development. In this study, I used...
Ubiquitination of proteins by the Nedd4 family of ubiquitin ligases is a significant mechanism in pr...
SummaryNedd4-1 is a “neuronal precursor cell expressed and developmentally downregulated protein” an...
The purpose of this dissertation is to bring a greater understanding of the trafficking and function...
Ubiquitin-dependent proteolysis is a major mechanism that downregulates misfolded proteins or those ...
A major interest in developmental neuroscience is to understand the cellular and molecular mechanism...