SummaryRobust dendrite morphogenesis is a critical step in the development of reproducible neural circuits. However, little is known about the extracellular cues that pattern complex dendrite morphologies. In the model nematode Caenorhabditis elegans, the sensory neuron PVD establishes stereotypical, highly branched dendrite morphology. Here, we report the identification of a tripartite ligand-receptor complex of membrane adhesion molecules that is both necessary and sufficient to instruct spatially restricted growth and branching of PVD dendrites. The ligand complex SAX-7/L1CAM and MNR-1 function at defined locations in the surrounding hypodermal tissue, whereas DMA-1 acts as the cognate receptor on PVD. Mutations in this complex lead to d...
SummaryPrecise positioning of dendritic branches is a critical step in the establishment of neuronal...
Simple cell-cell interactions can give rise to complex cellular patterns. For example, neurons of th...
A neuron's contribution to the information flow within a neural circuit is governed by the structure...
SummaryRobust dendrite morphogenesis is a critical step in the development of reproducible neural ci...
SummarySensory dendrites depend on cues from their environment to pattern their growth and direct th...
Dendrites often adopt complex branched structures. The development and organization of these arbors ...
Proper morphogenesis of dendrites plays a fundamental role in the establishment of neural circuits. ...
SummarySensory dendrites innervate peripheral tissues through cell-cell interactions that are poorly...
Abstract Background Dendrite morphogenesis plays an essential role in establishing the connectivity ...
Extracellular adhesion molecules and their neuronal receptors guide the growth and branching of axon...
<div><p>The construction of a large dendritic arbor requires robust growth and the precise delivery ...
Sensory neurons interact with muscles in many contexts, but muscle-derived signals that pattern sens...
The shapes and attachments of cells determine the machinery of organs; for example, the shapes and a...
SummaryDendrites of the same neuron usually avoid each other. Some neurons also repel similar neuron...
Ligand receptor interactions instruct axon guidance during development. How dendrites are guided to ...
SummaryPrecise positioning of dendritic branches is a critical step in the establishment of neuronal...
Simple cell-cell interactions can give rise to complex cellular patterns. For example, neurons of th...
A neuron's contribution to the information flow within a neural circuit is governed by the structure...
SummaryRobust dendrite morphogenesis is a critical step in the development of reproducible neural ci...
SummarySensory dendrites depend on cues from their environment to pattern their growth and direct th...
Dendrites often adopt complex branched structures. The development and organization of these arbors ...
Proper morphogenesis of dendrites plays a fundamental role in the establishment of neural circuits. ...
SummarySensory dendrites innervate peripheral tissues through cell-cell interactions that are poorly...
Abstract Background Dendrite morphogenesis plays an essential role in establishing the connectivity ...
Extracellular adhesion molecules and their neuronal receptors guide the growth and branching of axon...
<div><p>The construction of a large dendritic arbor requires robust growth and the precise delivery ...
Sensory neurons interact with muscles in many contexts, but muscle-derived signals that pattern sens...
The shapes and attachments of cells determine the machinery of organs; for example, the shapes and a...
SummaryDendrites of the same neuron usually avoid each other. Some neurons also repel similar neuron...
Ligand receptor interactions instruct axon guidance during development. How dendrites are guided to ...
SummaryPrecise positioning of dendritic branches is a critical step in the establishment of neuronal...
Simple cell-cell interactions can give rise to complex cellular patterns. For example, neurons of th...
A neuron's contribution to the information flow within a neural circuit is governed by the structure...