AbstractDevelopment and plasticity of synapses are brought about by a complex interplay between various signaling pathways. Typically, either changing the number of synapses or strengthening an existing synapse can lead to changes during synaptic plasticity. Altering the machinery that governs the exocytosis of synaptic vesicles, which primarily fuse at specialized structures known as active zones on the presynaptic terminal, brings about these changes. Although signaling pathways that regulate the synaptic plasticity from the postsynaptic compartments are well defined, the pathways that control these changes presynaptically are poorly described. In a genetic screen for synapse development in Drosophila, we found that mutations in CK2α lead...
Fos and Jun are transcription factors that heterodimerize to form AP-1, a transcriptional activator ...
Manipulation of the postsynaptic hu-li tai-shao (hts) transcript can affect synaptic development and...
Molecular and genetic analysis of synaptic signaling in Drosophila has yielded many insights into ne...
AbstractDevelopment and plasticity of synapses are brought about by a complex interplay between vari...
Mutations in the kinesin-3 family member KIF1A have been associated with hereditary spastic parapleg...
Nerve cells contact each other at synapses and communicate via synaptic transmission. Once they for...
The dissection of presynaptic assembly processes has proven difficult in the past. Apart ...
Functional synaptic networks are compromised in many neurodevelopmental and neurodegenerative diseas...
The number of synapses is a major determinant of behavior and many neural diseases exhibit deviation...
The number of synapses is a major determinant of behavior and many neural diseases exhibit deviation...
The ability of established synaptic connections to strengthen and weaken (synapse plasticity) underl...
<div><p>The number of synapses is a major determinant of behavior and many neural diseases exhibit d...
Defining the molecular structure and function of synapses is a central theme in brain research. In D...
AbstractWe present evidence that Futsch, a novel protein with MAP1B homology, controls synaptic grow...
Techniques to induce activity-dependent neuronal plasticity in vivo allow the underlying signaling p...
Fos and Jun are transcription factors that heterodimerize to form AP-1, a transcriptional activator ...
Manipulation of the postsynaptic hu-li tai-shao (hts) transcript can affect synaptic development and...
Molecular and genetic analysis of synaptic signaling in Drosophila has yielded many insights into ne...
AbstractDevelopment and plasticity of synapses are brought about by a complex interplay between vari...
Mutations in the kinesin-3 family member KIF1A have been associated with hereditary spastic parapleg...
Nerve cells contact each other at synapses and communicate via synaptic transmission. Once they for...
The dissection of presynaptic assembly processes has proven difficult in the past. Apart ...
Functional synaptic networks are compromised in many neurodevelopmental and neurodegenerative diseas...
The number of synapses is a major determinant of behavior and many neural diseases exhibit deviation...
The number of synapses is a major determinant of behavior and many neural diseases exhibit deviation...
The ability of established synaptic connections to strengthen and weaken (synapse plasticity) underl...
<div><p>The number of synapses is a major determinant of behavior and many neural diseases exhibit d...
Defining the molecular structure and function of synapses is a central theme in brain research. In D...
AbstractWe present evidence that Futsch, a novel protein with MAP1B homology, controls synaptic grow...
Techniques to induce activity-dependent neuronal plasticity in vivo allow the underlying signaling p...
Fos and Jun are transcription factors that heterodimerize to form AP-1, a transcriptional activator ...
Manipulation of the postsynaptic hu-li tai-shao (hts) transcript can affect synaptic development and...
Molecular and genetic analysis of synaptic signaling in Drosophila has yielded many insights into ne...