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A Colorimetric Assay that Specifically Measures Granzyme B Proteolytic Activity: Hydrolysis of Boc-Ala-Ala-Asp-S-Bzl
Published on: November 28, 2014
Real-time detection of CTL function reveals distinct patterns of caspase activation mediated by Fas versus granzyme B
Jinzhu Li1, Sarah K Figueira1, Alexandra C A Vrazo1
1Division of Allergy/Immunology, Cincinnati Children's Hospital Medical Center, Cincinnati, OH 45229;
Abstract:
Activation of caspase-mediated apoptosis is reported to be a hallmark of both granzyme B- and Fas-mediated pathways of killing by CTLs; however, the kinetics of caspase activation remain undefined owing to an inability to monitor target cell-specific apoptosis in real time. We have overcome this limitation by developing a novel biosensor assay that detects continuous, protease-specific activity in target cells. Biosensors were engineered from a circularly permuted luciferase, linked internally by either caspase 3/7 or granzyme B/caspase 8 cleavage sites, thus allowing activation upon proteolytic cleavage by the respective proteases. Coincubation of murine CTLs with target cells expressing either type of biosensor led to a robust luminescent signal within minutes of cell contact. The signal was modulated by the strength of TCR signaling, the ratio of CTL/target cells, and the type of biosensor used. Additionally, the luciferase signal at 30 min correlated with target cell death, as measured by a (51)Cr-release assay. The rate of caspase 3/7 biosensor activation was unexpectedly rapid following granzyme B- compared with Fas-mediated signal induction in murine CTLs; the latter appeared gradually after a 90-min delay in perforin- or granzyme B-deficient CTLs. Remarkably, the Fas-dependent, caspase 3/7 biosensor signal induced by perforin-deficient human CTLs was also detectable after a 90-min delay when measured by redirected killing. Thus, we have used a novel, real-time assay to demonstrate the distinct pattern of caspase activation induced by granzyme B versus Fas in human and murine CTLs.
Insights
A new biosensor assay allows real-time monitoring of target cell apoptosis during cytotoxic T lymphocyte (CTL) killing. Granzyme B-mediated killing rapidly activates caspases, while Fas-mediated killing shows a delayed caspase activation pattern.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- Cytotoxic T lymphocytes (CTLs) induce apoptosis in target cells through granzyme B and Fas pathways.
- Monitoring the kinetics of caspase activation in real-time during CTL-mediated killing has been a significant challenge.
Purpose of the Study:
- To develop and utilize a novel biosensor assay for real-time detection of protease-specific activity and caspase activation in target cells during CTL killing.
- To elucidate the distinct kinetics of caspase activation between granzyme B- and Fas-mediated CTL killing pathways.
Main Methods:
- Engineered biosensors using circularly permuted luciferase with specific caspase cleavage sites (caspase 3/7, caspase 8).
- Coincubated biosensor-expressing target cells with murine and human CTLs.
- Measured luminescence in real-time and correlated with target cell death using a (51)Cr-release assay.
Main Results:
- A robust luminescent signal was detected within minutes of CTL-target cell contact.
- Granzyme B-mediated killing showed rapid caspase 3/7 activation, while Fas-mediated killing exhibited a delayed activation (90 min).
- This distinct kinetic pattern was observed in both murine and human CTLs, even in the absence of perforin.
Conclusions:
- The novel biosensor assay provides a powerful tool for real-time analysis of CTL-mediated apoptosis.
- Granzyme B and Fas pathways induce distinct temporal patterns of caspase activation during CTL killing.
- These findings offer new insights into the mechanisms of CTL-mediated cytotoxicity.
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