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Updated: Jun 14, 2025

Study of Protein-protein Interactions in Autophagy Research
Published on: September 9, 2017
Hsp70 Negatively Regulates Autophagy via Governing AMPK Activation, and Dual Hsp70-Autophagy Inhibition Induces
Bashar Alhasan1, Yana A Gladova1, Dmitry V Sverchinsky1
1Lab of Cell Protection Mechanisms, Institute of Cytology, Russian Academy of Sciences, 194064 St. Petersburg, Russia.
Abstract:
Proteostasis mechanisms, such as proteotoxic-stress response and autophagy, are increasingly recognized for their roles in influencing various cancer hallmarks such as tumorigenesis, drug resistance, and recurrence. However, the precise mechanisms underlying their coordination remain not fully elucidated. The aim of this study is to investigate the molecular interplay between Hsp70 and autophagy in lung adenocarcinoma cells and elucidate its impact on the outcomes of anticancer therapies in vitro. For this purpose, we utilized the human lung adenocarcinoma A549 cell line and genetically modified it by knockdown of Hsp70 or HSF1, and the H1299 cell line with knockdown or overexpression of Hsp70. In addition, several treatments were employed, including treatment with Hsp70 inhibitors (VER-155008 and JG-98), HSF1 activator ML-346, or autophagy modulators (SAR405 and Rapamycin). Using immunoblotting, we found that Hsp70 negatively regulates autophagy by directly influencing AMPK activation, uncovering a novel regulatory mechanism of autophagy by Hsp70. Genetic or chemical Hsp70 overexpression was associated with the suppression of AMPK and autophagy. Conversely, the inhibition of Hsp70, genetically or chemically, resulted in the upregulation of AMPK-mediated autophagy. We further investigated whether Hsp70 suppression-mediated autophagy exhibits pro-survival- or pro-death-inducing effects via MTT test, colony formation, CellTiter-Glo 3D-Spheroid viability assay, and Annexin/PI apoptosis assay. Our results show that combined inhibition of Hsp70 and autophagy, along with cisplatin treatment, synergistically reduces tumor cell metabolic activity, growth, and viability in 2D and 3D tumor cell models. These cytotoxic effects were exerted by substantially potentiating apoptosis, while activating autophagy via rapamycin slightly rescued tumor cells from apoptosis. Therefore, our findings demonstrate that the combined inhibition of Hsp70 and autophagy represents a novel and promising therapeutic approach that may disrupt the capacity of refractory tumor cells to withstand conventional therapies in NSCLC.
Insights
Heat shock protein 70 (Hsp70) inhibits autophagy in lung cancer cells. Combining Hsp70 inhibition with autophagy inhibition and chemotherapy synergistically kills cancer cells by increasing apoptosis.
Area of Science:
- Molecular Biology
- Cancer Research
- Cellular Stress Response
Background:
- Proteostasis mechanisms, including autophagy and the proteotoxic-stress response, are crucial in cancer hallmarks like drug resistance and recurrence.
- The coordination between Hsp70 and autophagy in lung adenocarcinoma remains unclear.
- Understanding this interplay is vital for developing effective anticancer therapies.
Purpose of the Study:
- To investigate the molecular interplay between Hsp70 and autophagy in lung adenocarcinoma cells.
- To elucidate the impact of this interplay on anticancer therapy outcomes.
- To identify novel therapeutic strategies targeting Hsp70 and autophagy.
Main Methods:
- Utilized human lung adenocarcinoma cell lines (A549 and H1299) with genetic modifications (Hsp70/HSF1 knockdown/overexpression).
- Employed Hsp70 inhibitors (VER-155008, JG-98), HSF1 activator (ML-346), and autophagy modulators (SAR405, Rapamycin).
- Assessed molecular interactions via immunoblotting and evaluated cellular effects using MTT, colony formation, CellTiter-Glo 3D-Spheroid viability, and Annexin/PI apoptosis assays.
Main Results:
- Hsp70 was found to negatively regulate autophagy by inhibiting AMPK activation.
- Hsp70 overexpression suppressed AMPK and autophagy; Hsp70 inhibition upregulated AMPK-mediated autophagy.
- Combined inhibition of Hsp70 and autophagy synergistically enhanced cisplatin's cytotoxicity by potentiating apoptosis.
Conclusions:
- Hsp70 negatively regulates autophagy through AMPK, revealing a novel mechanism.
- Combined inhibition of Hsp70 and autophagy, alongside chemotherapy, offers a potent strategy against refractory lung adenocarcinoma.
- This approach may overcome resistance to conventional therapies in non-small cell lung cancer (NSCLC).
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