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Updated: Aug 20, 2026

Exploring Caspase Mutations and Post-Translational Modification by Molecular Modeling Approaches
Published on: October 13, 2022
Downstream caspases are novel targets for the antiapoptotic activity of the molecular chaperone hsp70
Elena Yu Komarova1, Elena A Afanasyeva, Marina M Bulatova
1Institute of Cytology RAS, Tikhoretsky pr. 4, St Petersburg 194064, Russia.
Abstract:
The response of cancer cells to apoptosis-inducing agents can be characterized by 2 opposing factors, the proapoptotic caspase cascade and the antiapoptotic stress protein Hsp70. We show here that these factors interact in U-937 leukemia cells induced to apoptosis with anticancer drugs, etoposide and adriamycin (ADR). The protective effect of Hsp70 was verified using 2 approaches: mild heat stress and transfection-mediated overexpression of the Hsp70 gene. The increase in Hsp70 levels attained by these 2 methods was found to postpone caspase activation for 12-18 hours. An in vitro assay was developed using mouse myeloma NS0/1 cells, which lack the expression of Hsp70. Measurement of DEVD-ase activity in extracts of apoptotic NS0/1 cells incubated with purified Hsp70 showed that Hsp70 reduced caspase activity by up to 50% of its control value in a dose-dependent manner. The hypothesis that the inhibitory effect of Hsp70 on caspase-3/7 activity related to a direct interaction between Hsp70 and the caspases was tested by reciprocal immunoprecipitations and Far-western analyses. These tests were performed with extracts of Hsp70-overexpressing, control, and ADR-treated U-937 cells and using anti-caspase-3, caspase-7, and anti-Hsp70 antibodies, and the data clearly showed that Hsp70 was able to interact with the proforms of these caspases in cell lysates and with reconstituted purified proteins but did not bind the activated forms of either caspase-3 or -7. This association was also corroborated by a novel, enzyme-linked immunosorbent assay-like assay, protein interaction assay, that combined the advantages of immunoprecipitation and immunoblotting in a 96-well microplate-based assay. Thus, Hsp70 may act to suppress caspase-dependent apoptotic signaling through binding the precursor forms of both caspase-3 and caspase-7 and preventing their maturation.
Insights
Heat shock protein 70 (Hsp70) inhibits cancer cell apoptosis by binding to precursor forms of caspase-3 and caspase-7, delaying their activation and promoting cell survival against anticancer drugs.
Area of Science:
- Cellular Biology
- Molecular Biology
- Biochemistry
Background:
- Cancer cell apoptosis involves opposing proapoptotic caspases and antiapoptotic stress proteins like Hsp70.
- Anticancer drugs like etoposide and adriamycin induce apoptosis but their efficacy can be modulated by cellular stress responses.
Purpose of the Study:
- To investigate the interaction between Hsp70 and caspases in cancer cells undergoing drug-induced apoptosis.
- To elucidate the mechanism by which Hsp70 influences caspase activation and apoptotic signaling.
Main Methods:
- Overexpression of Hsp70 in U-937 leukemia cells via heat stress and gene transfection.
- In vitro caspase activity assays using Hsp70-deficient NS0/1 myeloma cells.
- Biochemical assays including reciprocal immunoprecipitation, Far-western analysis, and a novel protein interaction assay.
Main Results:
- Increased Hsp70 levels delayed caspase activation by 12-18 hours in U-937 cells.
- Hsp70 dose-dependently reduced caspase activity by up to 50% in vitro.
- Hsp70 directly interacted with procaspase-3 and procaspase-7 but not their activated forms.
Conclusions:
- Hsp70 suppresses caspase-dependent apoptosis by binding to procaspase-3 and procaspase-7, preventing their maturation.
- This interaction represents a novel mechanism of Hsp70-mediated cytoprotection against apoptotic stimuli.
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