Altered dendritic arborization contributes to numerous physiological processes including synaptic plasticity, behavior, learning and memory, and is one of the most consistent neuropathologic conditions found in a number of mental retardation disorders, schizophrenia, and neurodegenerative disease. COP9 signalosome (CSN), an evolutionarily conserved regulator of the Cullin-based ubiquitin ligases that act in the proteasome pathway, has been found associated with diverse debilitating syndromes, suggesting that CSN may be involved in regulation of dendritic arborization. However, the mechanism of this control, if it exists, is unknown. To address whether the CSN pathway plays a role in dendrites, we used a simple and genetically tractable mode...
AbstractProper sampling of sensory inputs critically depends upon neuron morphogenesis and expressio...
<p>(A) PNS neurons in a non-mutant third instar larva, visualized by the <i>109(2)80-GAL4</i>-driven...
AbstractThe translational regulators Nanos (Nos) and Pumilio (Pum) work together to regulate the mor...
Altered dendritic arborization contributes to numerous physiological processes including synaptic pl...
Components of the COP9 signalosome (CSN), a key member of the conserved 26S proteasome degradation p...
During development, neural competence is conferred and maintained by integrating spatial and tempora...
Thesis (Ph.D.)--University of Washington, 2016-06The directional flow of information in neurons depe...
The brain is composed of a network of neural cells which have elaborate cellular structures, especia...
Pruning that selectively eliminates unnecessary axons/dendrites is crucial for sculpting the nervous...
The diverse and intricate dendritic branching patterns of neurons determine their ability to collect...
Precise dendrite patterning is critical for the wiring and function of the entire nervous system. Pr...
<p>Dendrites are the primary sites of information input into neurons. Proper establishment and maint...
Pruning that selectively eliminates unnecessary axons/dendrites is crucial for sculpting the nervous...
Developmental pruning of axons and dendrites is crucial for the formation of precise neuronal connec...
Abstract Background Developing neurons form dendritic trees with cell type-specific patterns of grow...
AbstractProper sampling of sensory inputs critically depends upon neuron morphogenesis and expressio...
<p>(A) PNS neurons in a non-mutant third instar larva, visualized by the <i>109(2)80-GAL4</i>-driven...
AbstractThe translational regulators Nanos (Nos) and Pumilio (Pum) work together to regulate the mor...
Altered dendritic arborization contributes to numerous physiological processes including synaptic pl...
Components of the COP9 signalosome (CSN), a key member of the conserved 26S proteasome degradation p...
During development, neural competence is conferred and maintained by integrating spatial and tempora...
Thesis (Ph.D.)--University of Washington, 2016-06The directional flow of information in neurons depe...
The brain is composed of a network of neural cells which have elaborate cellular structures, especia...
Pruning that selectively eliminates unnecessary axons/dendrites is crucial for sculpting the nervous...
The diverse and intricate dendritic branching patterns of neurons determine their ability to collect...
Precise dendrite patterning is critical for the wiring and function of the entire nervous system. Pr...
<p>Dendrites are the primary sites of information input into neurons. Proper establishment and maint...
Pruning that selectively eliminates unnecessary axons/dendrites is crucial for sculpting the nervous...
Developmental pruning of axons and dendrites is crucial for the formation of precise neuronal connec...
Abstract Background Developing neurons form dendritic trees with cell type-specific patterns of grow...
AbstractProper sampling of sensory inputs critically depends upon neuron morphogenesis and expressio...
<p>(A) PNS neurons in a non-mutant third instar larva, visualized by the <i>109(2)80-GAL4</i>-driven...
AbstractThe translational regulators Nanos (Nos) and Pumilio (Pum) work together to regulate the mor...