Cysteine-string proteins (Csps) are vesicle proteins involved in neurotransmission. They contain at least four domains: an N-terminal J-domain which can interact with the chaperone Hsc70, an adjacent linker region, the defining cysteine rich domain and a variable C terminus. As the relevance of these domains for the function of Csps in exocytosis is unknown, we have performed a mutational analysis of Csp domains using insulin release by large dense core vesicles (LDCVs) as a model of regulated exocytosis. All mutants were apparently palmitoylated and their subcellular distribution was similar to endogenous Csp. Point mutations within the highly conserved HPD motif of the J-domain abolished activation of Hsc70. However, these mutations alter...
Protein kinase B/Akt has been implicated in the insulin-dependent exocytosis of GLUT4-containing ves...
This is an Open Access article, distributed under the terms of the Creative Commons Attribution lice...
This work was supported by a grant from the Wellcome Trust to A.M., L.Y.L., and R.D.B. (grant ref. 0...
AbstractCysteine-string proteins (Csps) are vesicle proteins involved in exocytosis of synaptic vesi...
Cysteine-string proteins (Csps) are vesicle proteins involved in exocytosis of synaptic vesicles in ...
AbstractCysteine string proteins (CSPs) belong to the DnaJ-like chaperone family and play an importa...
Abstract: Cysteine-string protein (Csp) is a major syn-aptic vesicle and secretory granule protein f...
The functionality of neural networks is predominantly derived from chemical synapses, which facilita...
Background: Cysteine string protein-a (CSPa) is a chaperone to ensure protein folding. Loss of CSPa ...
BACKGROUND: Cysteine string protein-α (CSPα) is a chaperone to ensure protein folding. Loss of CSPα ...
<div><p>Background</p><p>Cysteine string protein-α (CSPα) is a chaperone to ensure protein folding. ...
Depolarization-dependent neurotransmitter release is mediated by the rapid assembly and disassembly ...
Exocytosis, the fusion of intracellular vesicles with the plasma membrane, is fundamental to interce...
The secretory vesicle cysteine string proteins (CSPs) are members of the DnaJ family of chaperones, ...
AbstractPrevious in vitro studies of cysteine-string protein (CSP) imply a potential role for the cl...
Protein kinase B/Akt has been implicated in the insulin-dependent exocytosis of GLUT4-containing ves...
This is an Open Access article, distributed under the terms of the Creative Commons Attribution lice...
This work was supported by a grant from the Wellcome Trust to A.M., L.Y.L., and R.D.B. (grant ref. 0...
AbstractCysteine-string proteins (Csps) are vesicle proteins involved in exocytosis of synaptic vesi...
Cysteine-string proteins (Csps) are vesicle proteins involved in exocytosis of synaptic vesicles in ...
AbstractCysteine string proteins (CSPs) belong to the DnaJ-like chaperone family and play an importa...
Abstract: Cysteine-string protein (Csp) is a major syn-aptic vesicle and secretory granule protein f...
The functionality of neural networks is predominantly derived from chemical synapses, which facilita...
Background: Cysteine string protein-a (CSPa) is a chaperone to ensure protein folding. Loss of CSPa ...
BACKGROUND: Cysteine string protein-α (CSPα) is a chaperone to ensure protein folding. Loss of CSPα ...
<div><p>Background</p><p>Cysteine string protein-α (CSPα) is a chaperone to ensure protein folding. ...
Depolarization-dependent neurotransmitter release is mediated by the rapid assembly and disassembly ...
Exocytosis, the fusion of intracellular vesicles with the plasma membrane, is fundamental to interce...
The secretory vesicle cysteine string proteins (CSPs) are members of the DnaJ family of chaperones, ...
AbstractPrevious in vitro studies of cysteine-string protein (CSP) imply a potential role for the cl...
Protein kinase B/Akt has been implicated in the insulin-dependent exocytosis of GLUT4-containing ves...
This is an Open Access article, distributed under the terms of the Creative Commons Attribution lice...
This work was supported by a grant from the Wellcome Trust to A.M., L.Y.L., and R.D.B. (grant ref. 0...