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HSP70/HSF1 axis, regulated via a PI3K/AKT pathway, is a druggable target in chronic lymphocytic leukemia
Federica Frezzato1,2, Flavia Raggi1,2, Veronica Martini1,2
1Department of Medicine, Hematology and Clinical Immunology Branch, Padua University School of Medicine, Padua, Italy.
Abstract:
Considering the role played by the heat shock protein of 70 kDa (HSP70) in cancer, we characterized this protein and its major regulator, the heat shock factor 1 (HSF1), in chronic lymphocytic leukemia (CLL). We found both HSP70 and HSF1 overexpressed in CLL patients, correlated to poor prognosis and abnormally localized in the nucleus of leukemic B cells. The two proteins were strictly correlated each other and their levels decreased consensually in those patients responding to in vivo therapeutic regimens. HSP70 and HSF1 inhibition was proved to be effective in inducing a dose-dependent in vitro apoptosis of CLL B cells. Considering that HSF1 is finely regulated by kinases belonging to pathways triggered by rat sarcoma (RAS), we benefited from a previous proteomic study performed in CLL patients aiming to assess the activation/expression of key signaling proteins. We found that patients showing high levels of HSP70 also expressed high Akt-Ser473, thus activating HSF1. Inhibition of PI3K, which activates AKT, reduced the expression of HSF1 and HSP70. By contrast, HSP70-low patients displayed high activation of MEK1/2 and ERK1/2, known to negatively regulate HSF1. These data demonstrate that the HSP70 expression is regulated by the modulation of HSF1 activity through the activation of RAS-regulated pathways and suggest the HSP70/HSF1 interplay as an interesting target for antileukemic therapies. Finally, inhibition of PI3K, that activates AKT, reduced the expression of HSF1 and HSP70.
Insights
Heat shock protein 70 (HSP70) and its regulator heat shock factor 1 (HSF1) are overexpressed in chronic lymphocytic leukemia (CLL), correlating with poor prognosis. Inhibiting HSP70/HSF1 induces apoptosis in CLL cells, suggesting a therapeutic target.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Heat shock protein 70 (HSP70) plays a role in cancer.
- Heat shock factor 1 (HSF1) is a major regulator of HSP70.
- Chronic lymphocytic leukemia (CLL) is a B-cell malignancy.
Purpose of the Study:
- To characterize HSP70 and HSF1 in CLL.
- To investigate the correlation between HSP70/HSF1 and CLL prognosis.
- To explore the therapeutic potential of targeting HSP70/HSF1 in CLL.
Main Methods:
- Overexpression and nuclear localization of HSP70 and HSF1 in CLL patients were assessed.
- Correlation between HSP70/HSF1 levels and patient response to therapy was analyzed.
- In vitro apoptosis of CLL B cells was induced by HSP70 and HSF1 inhibition.
- The role of PI3K/AKT and RAS-regulated pathways in HSP70/HSF1 regulation was investigated.
Main Results:
- HSP70 and HSF1 were overexpressed in CLL patients, correlating with poor prognosis.
- HSP70 and HSF1 levels decreased in patients responding to therapy.
- HSP70/HSF1 inhibition induced dose-dependent apoptosis in CLL B cells.
- High HSP70 levels correlated with Akt-Ser473 activation, while low HSP70 levels correlated with MEK1/2 and ERK1/2 activation.
- PI3K inhibition reduced HSF1 and HSP70 expression.
Conclusions:
- HSP70 expression in CLL is regulated by HSF1 activity modulated through RAS-regulated pathways.
- The HSP70/HSF1 pathway is a potential therapeutic target for antileukemic strategies in CLL.
- Targeting PI3K/AKT signaling may reduce HSP70/HSF1 expression in CLL.
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