SummaryRegulated protein degradation via the ubiquitin-proteasome system (UPS) plays a central role in building synaptic connections, yet little is known about either which specific UPS components are involved or UPS targets in neurons. We report that inhibiting the UPS in developing Xenopus retinal ganglion cells (RGCs) with a dominant-negative ubiquitin mutant decreases terminal branching in the tectum but does not affect long-range navigation to the tectum. We identify Nedd4 as a prominently expressed E3 ligase in RGC axon growth cones and show that disrupting its function severely inhibits terminal branching. We further demonstrate that PTEN, a negative regulator of the PI3K pathway, is a key downstream target of Nedd4: not only does Ne...
SummarySlits mediate multiple axon guidance decisions, but the mechanisms underlying the responses o...
<div><p>Inhibition of the phospholipid phosphatase and tumor suppressor PTEN leads to excessive pola...
Background: The growth cone interprets cues in its environment in order to reach its target. We want...
Regulated protein degradation via the ubiquitin-proteasome system (UPS) plays a central role in buil...
SummaryRegulated protein degradation via the ubiquitin-proteasome system (UPS) plays a central role ...
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...
Correct ontogeny of the nervous system is reliant upon exquisite regulation of exogenous growth fact...
Ubiquitination of proteins by the Nedd4 family of ubiquitin ligases is a significant mechanism in pr...
Protein ubiquitination is a core regulatory principle in neuronal development. In this study, I used...
We used deletion mutants to study -catenin function in axon arborization of retinal ganglion cells (...
AbstractParkinson's disease is a neurodegenerative disorder, characterized by accumulation and misfo...
Parkinson's disease is a neurodegenerative disorder, characterized by accumulation and misfolding of...
The purpose of this dissertation is to bring a greater understanding of the trafficking and function...
SummaryNedd4-1 is a “neuronal precursor cell expressed and developmentally downregulated protein” an...
SummarySlits mediate multiple axon guidance decisions, but the mechanisms underlying the responses o...
<div><p>Inhibition of the phospholipid phosphatase and tumor suppressor PTEN leads to excessive pola...
Background: The growth cone interprets cues in its environment in order to reach its target. We want...
Regulated protein degradation via the ubiquitin-proteasome system (UPS) plays a central role in buil...
SummaryRegulated protein degradation via the ubiquitin-proteasome system (UPS) plays a central role ...
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...
Correct ontogeny of the nervous system is reliant upon exquisite regulation of exogenous growth fact...
Ubiquitination of proteins by the Nedd4 family of ubiquitin ligases is a significant mechanism in pr...
Protein ubiquitination is a core regulatory principle in neuronal development. In this study, I used...
We used deletion mutants to study -catenin function in axon arborization of retinal ganglion cells (...
AbstractParkinson's disease is a neurodegenerative disorder, characterized by accumulation and misfo...
Parkinson's disease is a neurodegenerative disorder, characterized by accumulation and misfolding of...
The purpose of this dissertation is to bring a greater understanding of the trafficking and function...
SummaryNedd4-1 is a “neuronal precursor cell expressed and developmentally downregulated protein” an...
SummarySlits mediate multiple axon guidance decisions, but the mechanisms underlying the responses o...
<div><p>Inhibition of the phospholipid phosphatase and tumor suppressor PTEN leads to excessive pola...
Background: The growth cone interprets cues in its environment in order to reach its target. We want...