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Updated: Aug 16, 2026

A Colorimetric Assay that Specifically Measures Granzyme B Proteolytic Activity: Hydrolysis of Boc-Ala-Ala-Asp-S-Bzl
Published on: November 28, 2014
Functional analysis of granzyme M and its role in immunity to infection
Lily I Pao1, Nital Sumaria, Janice M Kelly
1Cancer Immunology Program, Trescowthick Laboratories, Peter MacCallum Cancer Centre, East Melbourne, Victoria, Australia.
Abstract:
Cytotoxic lymphocytes express a large family of granule serine proteases, including one member, granzyme (Grz)M, with a unique protease activity, restricted expression, and distinct gene locus. Although a number of Grzs, including GrzM, have been shown to mediate target cell apoptosis in the presence of perforin, the biological activity of Grz has been restricted to control of a number of viral pathogens, including two natural mouse pathogens, ectromelia, and murine CMV (MCMV). In this article, we describe the first reported gene targeting of GrzM in mice. GrzM-deficient mice display normal NK cell/T cell development and homeostasis and intact NK cell-mediated cytotoxicity of tumor targets as measured by membrane damage and DNA fragmentation. GrzM-deficient mice demonstrated increased susceptibility to MCMV infection typified by the presence of more viral inclusions and transiently higher viral burden in the visceral organs of GrzM-deficient mice compared with wild-type (WT) mice. The cytotoxicity of NK cells from MCMV-infected GrzM-deficient mice remained unchanged and, like WT control mice, GrzM-deficient mice eventually effectively cleared MCMV infection from the visceral organs. In contrast, GrzM-deficient mice were as resistant as WT control mice to mouse pox ectromelia infection, as well as challenge with a number of NK cell-sensitive tumors. These data confirm a role for GrzM in the host response to MCMV infection, but suggest that GrzM is not critical for NK cell-mediated cytotoxicity.
Insights
Granzyme M (GrzM) deficiency in mice increases susceptibility to murine cytomegalovirus (MCMV) but does not impair NK cell cytotoxicity against tumors or ectromelia virus. GrzM plays a specific role in antiviral defense.
Area of Science:
- Immunology
- Molecular Biology
- Virology
Background:
- Cytotoxic lymphocytes utilize serine proteases like granzyme M (GrzM).
- GrzM has unique activity and expression, and its role in viral defense is partially understood.
- Previous studies linked GrzM to apoptosis induction with perforin.
Purpose of the Study:
- To investigate the in vivo function of GrzM using gene-targeted mice.
- To determine GrzM's role in NK cell-mediated cytotoxicity and host defense against viral pathogens and tumors.
Main Methods:
- Generation of Granzyme M-deficient (GrzM-/-) mice.
- Assessment of NK and T cell development and homeostasis.
- Evaluation of NK cell-mediated cytotoxicity against tumor targets.
- Infection studies with murine cytomegalovirus (MCMV) and ectromelia virus.
- Analysis of viral burden and host immune response.
Main Results:
- GrzM-/- mice exhibit normal immune cell development and NK cell cytotoxicity against tumors.
- GrzM-/- mice show increased susceptibility to MCMV infection, with higher viral loads.
- NK cell cytotoxicity remains intact in MCMV-infected GrzM-/- mice.
- GrzM-/- mice are resistant to ectromelia virus and NK cell-sensitive tumors.
Conclusions:
- Granzyme M plays a specific role in host defense against MCMV infection.
- GrzM is not essential for general NK cell-mediated cytotoxicity against tumors or ectromelia virus.
- These findings clarify GrzM's specific contribution to antiviral immunity.
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