SummaryDendritic spines are postsynaptic compartments of excitatory synapses that undergo dynamic changes during development, including rapid spinogenesis in early postnatal life and significant pruning during adolescence. Spine pruning defects have been implicated in developmental neurological disorders such as autism, yet much remains to be uncovered regarding its molecular mechanism. Here, we show that spine pruning and maturation in the mouse somatosensory cortex are coordinated via the cadherin/catenin cell adhesion complex and bidrectionally regulated by sensory experience. We further demonstrate that locally enhancing cadherin/catenin-dependent adhesion or photo-stimulating a contacting channelrhodopsin-expressing axon stabilized the...
AbstractRecent studies suggest that members of the cadherin family of homophilic cell adhesion molec...
Synapse formation begins with the recognition of appropriate targets and formation of incipient cont...
BACKGROUND: β-catenin plays a central role in multiple developmental processes. However, it has been...
AbstractActivity-induced changes in adhesion molecules may coordinate presynaptic and postsynaptic p...
AbstractSynaptic remodeling has been postulated as a mechanism underlying synaptic plasticity, and c...
AbstractSynapse adhesion molecules play a key role in specifying and facilitating the recognition of...
SummaryBoth the cadherin-catenin complex and Rho-family GTPases have been shown to regulate dendrite...
5siThe precise contribution of the cadherin–-catenin synapse adhe- sion complex in the functional a...
A major interest in developmental neuroscience is to understand the cellular and molecular mechanism...
Synapses of the Central Nervous System are specialized junctions of cell-cell contact that transmit ...
Synapses of the central nervous system are specialized points of cell-cell contact that transmit sig...
co, directional information transfer. Moreover, the synaptic The cadherin–catenin cell-adhesion comp...
<div><p>Synapse elimination and pruning of axon collaterals are crucial developmental events in the ...
Synaptic cadherin adhesion complexes are known to be key regulators of synapse plasticity. However, ...
Synapse elimination and pruning of axon collaterals are crucial developmental events in the refineme...
AbstractRecent studies suggest that members of the cadherin family of homophilic cell adhesion molec...
Synapse formation begins with the recognition of appropriate targets and formation of incipient cont...
BACKGROUND: β-catenin plays a central role in multiple developmental processes. However, it has been...
AbstractActivity-induced changes in adhesion molecules may coordinate presynaptic and postsynaptic p...
AbstractSynaptic remodeling has been postulated as a mechanism underlying synaptic plasticity, and c...
AbstractSynapse adhesion molecules play a key role in specifying and facilitating the recognition of...
SummaryBoth the cadherin-catenin complex and Rho-family GTPases have been shown to regulate dendrite...
5siThe precise contribution of the cadherin–-catenin synapse adhe- sion complex in the functional a...
A major interest in developmental neuroscience is to understand the cellular and molecular mechanism...
Synapses of the Central Nervous System are specialized junctions of cell-cell contact that transmit ...
Synapses of the central nervous system are specialized points of cell-cell contact that transmit sig...
co, directional information transfer. Moreover, the synaptic The cadherin–catenin cell-adhesion comp...
<div><p>Synapse elimination and pruning of axon collaterals are crucial developmental events in the ...
Synaptic cadherin adhesion complexes are known to be key regulators of synapse plasticity. However, ...
Synapse elimination and pruning of axon collaterals are crucial developmental events in the refineme...
AbstractRecent studies suggest that members of the cadherin family of homophilic cell adhesion molec...
Synapse formation begins with the recognition of appropriate targets and formation of incipient cont...
BACKGROUND: β-catenin plays a central role in multiple developmental processes. However, it has been...