AbstractActivity-dependent secretion of BDNF is important in mediating synaptic plasticity, but how it is achieved is unclear. Here we uncover a sorting motif receptor-mediated mechanism for regulated secretion of BDNF. X-ray crystal structure analysis revealed a putative sorting motif, I16E18I105D106, in BDNF, which when mutated at the acidic residues resulted in missorting of proBDNF to the constitutive pathway in AtT-20 cells. A V20E mutation to complete a similar motif in NGF redirected a significant proportion of it from the constitutive to the regulated pathway. Modeling and binding studies showed interaction of the acidic residues in the BDNF motif with two basic residues in the sorting receptor, carboxypeptidase E (CPE). 35S labelin...
Activity-dependent secretion of brain-derived neurotrophic factor (BDNF) is thought to enhance synap...
BDNF plays a critical role in the regulation of synaptic strength and is essential for long-term pot...
During development, activity-dependent synaptic plasticity refines neuronal networks with high preci...
AbstractActivity-dependent secretion of BDNF is important in mediating synaptic plasticity, but how ...
The secretion of BDNF from neurons is under activity-dependent control: this is crucial for the form...
Brain-derived neurotrophic factor (BDNF), after activity-dependent secretion from neurons, modulates...
Neurons employ a diverse repertoire of trafficking organelles for secretion of solublemolecules and ...
SummaryAt presynaptic active zones, exocytosis of neurotransmitter vesicles (SVs) is driven by SNARE...
At presynaptic active zones, exocytosis of neurotransmitter vesicles (SVs) is driven by SNARE comple...
At presynaptic active zones, exocytosis of neurotransmitter vesicles (SVs) is driven by SNARE comple...
Carboxypeptidase E (CPE) is a member of the M14 metallocarboxypeptidases family and is responsible f...
BDNF plays a critical role in the regulation of synaptic strength and is essential for long-termpote...
AbstractThe sorting of soluble proteins into the regulated secretory pathway (RSP) involves aggregat...
AbstractA proposed mechanism for sorting secretory proteins into granules for release via the regula...
Sorting of proteins and lipids is an essential process for maintaining organelle composition and int...
Activity-dependent secretion of brain-derived neurotrophic factor (BDNF) is thought to enhance synap...
BDNF plays a critical role in the regulation of synaptic strength and is essential for long-term pot...
During development, activity-dependent synaptic plasticity refines neuronal networks with high preci...
AbstractActivity-dependent secretion of BDNF is important in mediating synaptic plasticity, but how ...
The secretion of BDNF from neurons is under activity-dependent control: this is crucial for the form...
Brain-derived neurotrophic factor (BDNF), after activity-dependent secretion from neurons, modulates...
Neurons employ a diverse repertoire of trafficking organelles for secretion of solublemolecules and ...
SummaryAt presynaptic active zones, exocytosis of neurotransmitter vesicles (SVs) is driven by SNARE...
At presynaptic active zones, exocytosis of neurotransmitter vesicles (SVs) is driven by SNARE comple...
At presynaptic active zones, exocytosis of neurotransmitter vesicles (SVs) is driven by SNARE comple...
Carboxypeptidase E (CPE) is a member of the M14 metallocarboxypeptidases family and is responsible f...
BDNF plays a critical role in the regulation of synaptic strength and is essential for long-termpote...
AbstractThe sorting of soluble proteins into the regulated secretory pathway (RSP) involves aggregat...
AbstractA proposed mechanism for sorting secretory proteins into granules for release via the regula...
Sorting of proteins and lipids is an essential process for maintaining organelle composition and int...
Activity-dependent secretion of brain-derived neurotrophic factor (BDNF) is thought to enhance synap...
BDNF plays a critical role in the regulation of synaptic strength and is essential for long-term pot...
During development, activity-dependent synaptic plasticity refines neuronal networks with high preci...