In response to a conditioning stress, the expression of a set of molecular chaperones called heat shock proteins is increased. In neurons, stress-induced and constitutively expressed molecular chaperones protect against damage induced by ischemia and neurodegenerative diseases, however the molecular basis of this protection is not known. Here we have investigated the crosstalk between stress-induced chaperones and cysteine string protein (CSPalpha). CSPalpha is a constitutively expressed synaptic vesicle protein bearing a J domain and a cysteine rich "string" region that has been implicated in the long term functional integrity of synaptic transmission and the defense against neurodegeneration. We have shown previously that the CSPalpha cha...
The 70 kDa heat shock protein (HSP70) family of chaperones are the front line of protection from str...
Heat shock proteins (HSPs) were originally identified as stress-responsive proteins required to deal...
Human neurodegenerative diseases occur as a result of various factors. Regardless of the variety in ...
In response to a conditioning stress, the expression of a set of molecular chaperones called heat sh...
The functionality of neural networks is predominantly derived from chemical synapses, which facilita...
Heat shock proteins (Hsps) are a set of molecular chaperones involved in cellular repair. They provi...
AbstractCysteine string protein (CSP) is a member of the DnaJ/Hsp40 family of co-chaperones that loc...
Cysteine string protein (CSPalpha) is a synaptic vesicle protein that displays unique anti-neurodege...
Heat shock proteins (HSPs) are families of molecular chaperones that play important homeostatic func...
Heat shock proteins (Hsps) represent the most evolutionarily ancient, conserved, and universal syste...
Heat shock protein 70 (Hsp70) is a highly conserved molecular chaperone that plays multiple roles in...
Heat shock proteins (Hsps) are a set of molecular chaperones involved in cellular repair. They provi...
Stress proteins or heat shock proteins (HSPs) are ubiquitous cellular components that have long been...
AbstractHeat shock and other proteotoxic stresses cause accumulation of nonnative proteins that trig...
Elevated expression of heat shock proteins (HSPs) has been demonstrated following various forms of s...
The 70 kDa heat shock protein (HSP70) family of chaperones are the front line of protection from str...
Heat shock proteins (HSPs) were originally identified as stress-responsive proteins required to deal...
Human neurodegenerative diseases occur as a result of various factors. Regardless of the variety in ...
In response to a conditioning stress, the expression of a set of molecular chaperones called heat sh...
The functionality of neural networks is predominantly derived from chemical synapses, which facilita...
Heat shock proteins (Hsps) are a set of molecular chaperones involved in cellular repair. They provi...
AbstractCysteine string protein (CSP) is a member of the DnaJ/Hsp40 family of co-chaperones that loc...
Cysteine string protein (CSPalpha) is a synaptic vesicle protein that displays unique anti-neurodege...
Heat shock proteins (HSPs) are families of molecular chaperones that play important homeostatic func...
Heat shock proteins (Hsps) represent the most evolutionarily ancient, conserved, and universal syste...
Heat shock protein 70 (Hsp70) is a highly conserved molecular chaperone that plays multiple roles in...
Heat shock proteins (Hsps) are a set of molecular chaperones involved in cellular repair. They provi...
Stress proteins or heat shock proteins (HSPs) are ubiquitous cellular components that have long been...
AbstractHeat shock and other proteotoxic stresses cause accumulation of nonnative proteins that trig...
Elevated expression of heat shock proteins (HSPs) has been demonstrated following various forms of s...
The 70 kDa heat shock protein (HSP70) family of chaperones are the front line of protection from str...
Heat shock proteins (HSPs) were originally identified as stress-responsive proteins required to deal...
Human neurodegenerative diseases occur as a result of various factors. Regardless of the variety in ...