AbstractMorphological complexity of neurons contributes to their functional complexity. How neurons generate different dendritic patterns is not known. We identified the sequoia mutant from a previous screen for dendrite mutants. Here we report that Sequoia is a pan-neural nuclear protein containing two putative zinc fingers homologous to the DNA binding domain of Tramtrack. sequoia mutants affect the cell fate decision of a small subset of neurons but have global effects on axon and dendrite morphologies of most and possibly all neurons. In support of sequoia as a specific regulator of neuronal morphogenesis, microarray experiments indicate that sequoia may regulate downstream genes that are important for executing neurite development rath...
Vertebrate and invertebrate dendrites are information-processing compartments that can be found on b...
The diversity of neuronal cells, especially in the size and shape of their dendritic and axonal arbo...
The diverse and intricate dendritic branching patterns of neurons determine their ability to collect...
AbstractMorphological complexity of neurons contributes to their functional complexity. How neurons ...
AbstractHow dendrites of different neuronal subtypes exhibit distinct branching patterns during deve...
Morphological diversity of dendrites contributes to specialized functions of individual neurons. In ...
Morphological diversity of dendrites contributes to specialized functions of individual neurons. In ...
AbstractMorphological diversity of dendrites contributes to specialized functions of individual neur...
The assembly and function of neural circuits depend on the patterned outgrowth, guidance and targeti...
AbstractThe translational regulators Nanos (Nos) and Pumilio (Pum) work together to regulate the mor...
Precise dendrite patterning is critical for the wiring and function of the entire nervous system. Pr...
SummaryThe transcription factors Abrupt (Ab) and Knot (Kn) act as selectors of distinct dendritic ar...
AbstractProper sampling of sensory inputs critically depends upon neuron morphogenesis and expressio...
Vertebrate and invertebrate dendrites are information-processing compartments that can be found on b...
The diversity of neuronal cells, especially in the size and shape of their dendritic and axonal arbo...
Vertebrate and invertebrate dendrites are information-processing compartments that can be found on b...
The diversity of neuronal cells, especially in the size and shape of their dendritic and axonal arbo...
The diverse and intricate dendritic branching patterns of neurons determine their ability to collect...
AbstractMorphological complexity of neurons contributes to their functional complexity. How neurons ...
AbstractHow dendrites of different neuronal subtypes exhibit distinct branching patterns during deve...
Morphological diversity of dendrites contributes to specialized functions of individual neurons. In ...
Morphological diversity of dendrites contributes to specialized functions of individual neurons. In ...
AbstractMorphological diversity of dendrites contributes to specialized functions of individual neur...
The assembly and function of neural circuits depend on the patterned outgrowth, guidance and targeti...
AbstractThe translational regulators Nanos (Nos) and Pumilio (Pum) work together to regulate the mor...
Precise dendrite patterning is critical for the wiring and function of the entire nervous system. Pr...
SummaryThe transcription factors Abrupt (Ab) and Knot (Kn) act as selectors of distinct dendritic ar...
AbstractProper sampling of sensory inputs critically depends upon neuron morphogenesis and expressio...
Vertebrate and invertebrate dendrites are information-processing compartments that can be found on b...
The diversity of neuronal cells, especially in the size and shape of their dendritic and axonal arbo...
Vertebrate and invertebrate dendrites are information-processing compartments that can be found on b...
The diversity of neuronal cells, especially in the size and shape of their dendritic and axonal arbo...
The diverse and intricate dendritic branching patterns of neurons determine their ability to collect...