Collateral branches from axons are key components of functional neural circuits that allow neurons to connect with multiple synaptic targets. Like axon growth and guidance, formation of collateral branches depends on the regulation of microtubules, but how such regulation is coordinated to ensure proper circuit development is not known. Based on microarray analysis, we have identified a role for microtubule-associated protein 7 (MAP7) during collateral branch development of dorsal root ganglion (DRG) sensory neurons. We show that MAP7 is expressed at the onset of collateral branch formation. Perturbation of its expression by overexpression or shRNA knockdown alters axon branching in cultured DRG neurons. Localization and time-lapse imaging ...
SummaryTo discover new genes involved in axon navigation, we conducted a forward genetic screen for ...
Microtubule-associated proteins (MAPs) are main candidates to stabilize neuronal microtubules, playi...
Microtubule-associated protein 1B (MAP1B) is prominently expressed during early stages of neuronal d...
Complex neural circuits are built from axonal branches that allow each neuron to connect with multip...
Neuronal cell morphogenesis depends on proper regulation of microtubule-based transport, but the und...
Neuronal process extension is dependent on the reorganisation of the cytoskeleton, in particular mic...
The microtubule cytoskeleton is essential for nearly every stage of neurodevelopment, fromdifferenti...
Cultured neurons obtained from a hypomorphous MAP1B mutant mouse line display a selective and signif...
Identification of the molecular mechanisms underlying axonal branching in vivo has begun in several ...
Axonal branching is an essential mechanism in nervous system function, as it allows a single neuron ...
SummaryAxon branching is fundamental to the development of the peripheral and central nervous system...
Axonal branching is a key process in the establishment of circuit connectivity within the nervous sy...
Summary: The motor protein kinesin-1 plays an important role in polarized sorting of transport vesic...
International audienceStructural microtubule associated proteins (MAPs) stabilize microtubules, a pr...
Axonal branching contributes substantially to neuronal circuit complexity. Studies in Drosophila hav...
SummaryTo discover new genes involved in axon navigation, we conducted a forward genetic screen for ...
Microtubule-associated proteins (MAPs) are main candidates to stabilize neuronal microtubules, playi...
Microtubule-associated protein 1B (MAP1B) is prominently expressed during early stages of neuronal d...
Complex neural circuits are built from axonal branches that allow each neuron to connect with multip...
Neuronal cell morphogenesis depends on proper regulation of microtubule-based transport, but the und...
Neuronal process extension is dependent on the reorganisation of the cytoskeleton, in particular mic...
The microtubule cytoskeleton is essential for nearly every stage of neurodevelopment, fromdifferenti...
Cultured neurons obtained from a hypomorphous MAP1B mutant mouse line display a selective and signif...
Identification of the molecular mechanisms underlying axonal branching in vivo has begun in several ...
Axonal branching is an essential mechanism in nervous system function, as it allows a single neuron ...
SummaryAxon branching is fundamental to the development of the peripheral and central nervous system...
Axonal branching is a key process in the establishment of circuit connectivity within the nervous sy...
Summary: The motor protein kinesin-1 plays an important role in polarized sorting of transport vesic...
International audienceStructural microtubule associated proteins (MAPs) stabilize microtubules, a pr...
Axonal branching contributes substantially to neuronal circuit complexity. Studies in Drosophila hav...
SummaryTo discover new genes involved in axon navigation, we conducted a forward genetic screen for ...
Microtubule-associated proteins (MAPs) are main candidates to stabilize neuronal microtubules, playi...
Microtubule-associated protein 1B (MAP1B) is prominently expressed during early stages of neuronal d...