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Updated: May 10, 2026

A Colorimetric Assay that Specifically Measures Granzyme B Proteolytic Activity: Hydrolysis of Boc-Ala-Ala-Asp-S-Bzl
Published on: November 28, 2014
Mouse granzyme A induces a novel death with writhing morphology that is mechanistically distinct from granzyme
O Susanto1, S E Stewart, I Voskoboinik
1Cancer Cell Death Laboratory, Peter MacCallum Cancer Centre, East Melbourne, Victoria, Australia.
Abstract:
Human and mouse granzyme (Gzm)B both induce target cell apoptosis in concert with pore-forming perforin (Pfp); however the mechanisms by which other Gzms induce non-apoptotic death remain controversial and poorly characterised. We used timelapse microscopy to document, quantitatively and in real time, the death of target cells exposed to primary natural killer (NK) cells from mice deficient in key Gzms. We found that in the vast majority of cases, NK cells from wild-type mice induced classic apoptosis. However, NK cells from syngeneic Gzm B-deficient mice induced a novel form of cell death characterised by slower kinetics and a pronounced, writhing, 'worm-like' morphology. Dying cells initially contracted but did not undergo membrane blebbing, and annexin-V staining was delayed until the onset of secondary necrosis. As it is different from any cell death process previously reported, we tentatively termed this cell death 'athetosis'. Two independent lines of evidence showed this alternate form of death was due to Gzm A: first, cell death was revealed in the absence of Gzm B, but was completely lost when the NK cells were deficient in both Gzm A and B; second, the athetotic morphology was precisely reproduced when recombinant mouse Gzm A was delivered by an otherwise innocuous dose of recombinant Pfp. Gzm A-mediated athetosis did not require caspase activation, early mitochondrial disruption or generation of reactive oxygen species, but did require an intact actin cytoskeleton and was abolished by latrunculin B and mycalolide B. This work defines an authentic role for mouse Gzm A in granule-induced cell death by cytotoxic lymphocytes.
Insights
Mouse granzyme A (Gzm A) induces a novel cell death called athetosis, distinct from apoptosis. This Gzm A-mediated cell death requires an intact actin cytoskeleton and occurs independently of caspases.
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- Granzyme B (GzmB) and perforin (Pfp) induce apoptosis.
- Mechanisms of other granzymes (Gzms) in non-apoptotic cell death are poorly understood.
Purpose of the Study:
- To investigate the mechanisms of Gzm-mediated cell death beyond apoptosis.
- To characterize novel cell death pathways induced by natural killer (NK) cells.
Main Methods:
- Timelapse microscopy to observe cell death in real-time.
- Utilized NK cells from Gzm-deficient mice.
- Recombinant Gzm A and Pfp delivery.
Main Results:
- NK cells deficient in Gzm B induced a novel cell death, termed 'athetosis', with distinct morphology and delayed necrosis.
- Athetosis was confirmed to be Gzm A-mediated.
- Gzm A-induced athetosis requires an intact actin cytoskeleton but not caspases or mitochondrial disruption.
Conclusions:
- Mouse Gzm A induces athetosis, a caspase-independent, non-apoptotic cell death pathway.
- This study defines a novel role for Gzm A in cytotoxic lymphocyte-mediated cell death.
- Athetosis is characterized by specific morphological changes and dependence on the actin cytoskeleton.
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