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Updated: Jul 11, 2026

A Colorimetric Assay that Specifically Measures Granzyme B Proteolytic Activity: Hydrolysis of Boc-Ala-Ala-Asp-S-Bzl
Published on: November 28, 2014
Granzyme B-induced cell death involves induction of p53 tumor suppressor gene and its activation in tumor target
Franck Meslin1, Jerome Thiery, Catherine Richon
1INSERM U753, Laboratoire d'Immunologie des Tumeurs Humaines, Interaction Effecteurs Cytotoxiques-Système Tumoral, Institut Gustave Roussy PR1, IFR 54,Villejuif Cedex, France.
Abstract:
In this study we investigated the involvement of p53 in cytotoxic T-lymphocyte (CTL)-induced tumor target cell killing mediated by the perforin/granzymes pathway. For this purpose we used a human CTL clone (LT12) that kills its autologous melanoma target cells (T1), harboring a wild type p53. We demonstrated initially that LT12 kills its T1 target in a perforin/granzymes-dependent manner. Confocal microscopy and Western blot analysis indicated that conjugate formed between LT12 and T1 resulted in rapid cytoplasmic accumulation of p53 and its activation in T1 target cells. Cytotoxic assay using recombinant granzyme B (GrB) showed that this serine protease is the predominant factor inducing such accumulation. Furthermore, RNA interference-mediated lowering of the p53 protein in T1 cells or pifithrin-alpha-induced p53-specific inhibition activity significantly decreased CTL-induced target killing mediated by CTL or recombinant GrB. This emphasizes that p53 is an important determinant in granzyme B-induced apoptosis. Our data show furthermore that when T1 cells were treated with streptolysin-O/granzyme B, specific phosphorylation of p53 at Ser-15 and Ser-37 residues was observed subsequent to the activation of the stress kinases ataxia telangiectasia mutated (ATM) and p38K. Treatment of T1 cells with pifithrin-alpha resulted in inhibition of p53 phosphorylation at these residues and in a significant decrease in GrB-induced apoptotic T1 cell death. Furthermore, small interference RNAs targeting p53 was also accompanied by an inhibition of streptolysin-O/granzyme B-induced apoptotic T1 cell death. The present study supports p53 induction after CTL-induced stress in target cells. These findings provide new insight into a potential role of p53 as a component involved in the dynamic regulation of the major pathway of CTL-mediated cell death and may have therapeutic implications.
Insights
The tumor suppressor p53 is activated by cytotoxic T-lymphocytes (CTLs) during cancer cell killing. This p53 activation is crucial for granzyme B-mediated apoptosis, impacting cancer therapy.
Area of Science:
- Immunology
- Molecular Biology
- Cancer Research
Background:
- Cytotoxic T-lymphocytes (CTLs) eliminate tumor cells via the perforin/granzymes pathway.
- The role of p53 in CTL-mediated target cell apoptosis is not fully understood.
Purpose of the Study:
- To investigate the involvement of p53 in CTL-induced tumor cell killing.
- To elucidate the mechanism of p53 activation and its role in granzyme B-induced apoptosis.
Main Methods:
- Utilized a human CTL clone (LT12) and autologous melanoma target cells (T1).
- Employed confocal microscopy, Western blot, cytotoxic assays, recombinant granzyme B, RNA interference, and pifithrin-alpha.
- Analyzed p53 phosphorylation at Ser-15 and Ser-37, and activation of ATM and p38K kinases.
Main Results:
- CTLs induced rapid p53 accumulation and activation in target cells.
- Granzyme B was identified as a key factor in p53 activation.
- Inhibition of p53 or its phosphorylation significantly reduced CTL- and granzyme B-mediated cell death.
- p53 phosphorylation at Ser-15 and Ser-37 followed ATM and p38K activation.
Conclusions:
- p53 plays a critical role in granzyme B-induced apoptosis during CTL-mediated killing.
- CTL-induced stress activates p53 in target cells, highlighting its regulatory role in cell death pathways.
- Findings suggest potential therapeutic strategies targeting the p53 pathway in cancer treatment.
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