SummaryHeat-shock protein 70 (HSP70) isoforms contribute to tumorigenesis through their well-documented antiapoptotic activity and via their role as cochaperones for the HSP90 molecular chaperone. HSP70 expression is induced following treatment with HSP90 inhibitors, which may attenuate the cell death effects of this class of inhibitor. Here we show that silencing either heat-shock cognate 70 (HSC70) or HSP72 expression in human cancer cell lines has no effect on HSP90 activity or cell proliferation. However, simultaneously reducing the expression of both of these isoforms induces proteasome-dependent degradation of HSP90 client proteins, G1 cell-cycle arrest, and extensive tumor-specific apoptosis. Importantly, simultaneous silencing of HS...
The stress-induced chaperone protein Hsp70 enables the initiation and progression of many cancers, m...
The heat shock proteins (Hsps) are a family of highly conserved proteins involved in the regulation ...
The search for molecules to be targeted that are involved in apoptosis resistance/increased survival...
SummaryHeat-shock protein 70 (HSP70) isoforms contribute to tumorigenesis through their well-documen...
The major heat shock protein, Hsp70, is an effective inhibitor of apoptosis. To study its mechanism ...
<div><p>Heat shock protein 90 (HSP90) inhibitors are potential drugs for cancer therapy. The inhibit...
The Hsp70 family of molecular chaperones is essential for protein folding, re-folding misfolded clie...
Inducible Hsp70 (Hsp70i) is overexpressed in a wide spectrum of human tumors and its expression corr...
Hsp70 is a molecular chaperone that binds to "client" proteins and protects them from protein degrad...
HSP90 was the first molecular target to inhibit the interaction of this heat shock protein (HSP) wi...
The proper balance between protein synthesis, folding, and turnover is termed protein homeostasis, o...
Heat shock protein 70 (Hsp70) and Hsp90 are molecular chaperones that play essential roles in tumor ...
SummaryThe heat shock protein HSP70 plays antiapoptotic and oncogenic roles, and thus its inhibition...
AbstractMultiple myeloma (MM) cells rely on protein homeostatic mechanisms for survival. These mecha...
The molecular chaperone heat shock protein 90 alpha (Hsp90α) has been recognized in various tumours ...
The stress-induced chaperone protein Hsp70 enables the initiation and progression of many cancers, m...
The heat shock proteins (Hsps) are a family of highly conserved proteins involved in the regulation ...
The search for molecules to be targeted that are involved in apoptosis resistance/increased survival...
SummaryHeat-shock protein 70 (HSP70) isoforms contribute to tumorigenesis through their well-documen...
The major heat shock protein, Hsp70, is an effective inhibitor of apoptosis. To study its mechanism ...
<div><p>Heat shock protein 90 (HSP90) inhibitors are potential drugs for cancer therapy. The inhibit...
The Hsp70 family of molecular chaperones is essential for protein folding, re-folding misfolded clie...
Inducible Hsp70 (Hsp70i) is overexpressed in a wide spectrum of human tumors and its expression corr...
Hsp70 is a molecular chaperone that binds to "client" proteins and protects them from protein degrad...
HSP90 was the first molecular target to inhibit the interaction of this heat shock protein (HSP) wi...
The proper balance between protein synthesis, folding, and turnover is termed protein homeostasis, o...
Heat shock protein 70 (Hsp70) and Hsp90 are molecular chaperones that play essential roles in tumor ...
SummaryThe heat shock protein HSP70 plays antiapoptotic and oncogenic roles, and thus its inhibition...
AbstractMultiple myeloma (MM) cells rely on protein homeostatic mechanisms for survival. These mecha...
The molecular chaperone heat shock protein 90 alpha (Hsp90α) has been recognized in various tumours ...
The stress-induced chaperone protein Hsp70 enables the initiation and progression of many cancers, m...
The heat shock proteins (Hsps) are a family of highly conserved proteins involved in the regulation ...
The search for molecules to be targeted that are involved in apoptosis resistance/increased survival...