Synapse-specific facilitation requires rapamycin-dependent local protein synthesis at the activated synapse. In Aplysia, rapamycin-dependent local protein synthesis serves two functions: (1) it provides a component of the mark at the activated synapse and thereby confers synapse specificity and (2) it stabilizes the synaptic growth associated with long-term facilitation. Here we report that a neuron-specific isoform of cytoplasmic polyadenylation element binding protein (CPEB) regulates this synaptic protein synthesis in an activity-dependent manner. Aplysia CPEB protein is upregulated locally at activated synapses, and it is needed not for the initiation but for the stable maintenance of long-term facilitation. We suggest that Aplysia CPEB...
SummaryThe time course of the requirement for local protein synthesis in the stabilization of learni...
The time course of the requirement for local protein synthesis in the stabilization of learning-rela...
SummaryPrions are proteins that can assume at least two distinct conformational states, one of which...
Synapse-specific facilitation requires rapamycin-dependent local protein synthesis at the activated ...
Synapse-specific facilitation requires rapamycin-dependent local protein synthesis at the activated ...
AbstractSynapse-specific facilitation requires rapamycin-dependent local protein synthesis at the ac...
Synapse-specific facilitation requires rapamycin-dependent local protein synthesis at the activated ...
AbstractSynapse-specific facilitation requires rapamycin-dependent local protein synthesis at the ac...
Neuronal cytoplasmic polyadenylation element binding protein (CPEB) plays a critical role in maintai...
SummaryThe time course of the requirement for local protein synthesis in the stabilization of learni...
The time course of the requirement for local protein synthesis in the stabilization of learning-rela...
The time course of the requirement for local protein synthesis in the stabilization of learning-rela...
The time course of the requirement for local protein synthesis in the stabilization of learning-rela...
AbstractThe requirement for transcription during long-lasting synaptic plasticity has raised the que...
SummaryPrions are proteins that can assume at least two distinct conformational states, one of which...
SummaryThe time course of the requirement for local protein synthesis in the stabilization of learni...
The time course of the requirement for local protein synthesis in the stabilization of learning-rela...
SummaryPrions are proteins that can assume at least two distinct conformational states, one of which...
Synapse-specific facilitation requires rapamycin-dependent local protein synthesis at the activated ...
Synapse-specific facilitation requires rapamycin-dependent local protein synthesis at the activated ...
AbstractSynapse-specific facilitation requires rapamycin-dependent local protein synthesis at the ac...
Synapse-specific facilitation requires rapamycin-dependent local protein synthesis at the activated ...
AbstractSynapse-specific facilitation requires rapamycin-dependent local protein synthesis at the ac...
Neuronal cytoplasmic polyadenylation element binding protein (CPEB) plays a critical role in maintai...
SummaryThe time course of the requirement for local protein synthesis in the stabilization of learni...
The time course of the requirement for local protein synthesis in the stabilization of learning-rela...
The time course of the requirement for local protein synthesis in the stabilization of learning-rela...
The time course of the requirement for local protein synthesis in the stabilization of learning-rela...
AbstractThe requirement for transcription during long-lasting synaptic plasticity has raised the que...
SummaryPrions are proteins that can assume at least two distinct conformational states, one of which...
SummaryThe time course of the requirement for local protein synthesis in the stabilization of learni...
The time course of the requirement for local protein synthesis in the stabilization of learning-rela...
SummaryPrions are proteins that can assume at least two distinct conformational states, one of which...