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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
Survivin and Granzyme B-induced apoptosis, a novel anticancer therapy
Hugo Caldas1, Florinda O Jaynes, Michael W Boyer
1Center for Childhood Cancer, Columbus Children's Research Institute, Room WA5021, 700 Children's Drive, Columbus, OH 43205, USA.
Abstract:
Survivin is an antiapoptotic protein highly expressed in malignant cells that confers resistance to cytotoxic therapy. Granzyme B is a potent cytotoxic protein that is released from mammalian natural killer cells and CTLs following noxious stimuli, including foreign invaders. Here, we took advantage of the properties of these two functionally divergent molecules to create a molecular agent that specifically activates Granzyme B within tumor cells. We designed Survivin and Granzyme B-induced apoptosis (SAGA), which consists of a fusion of the Survivin gene promoter to the coding sequence of active Granzyme B. In cultured human tumor cells transfected with SAGA DNA, Granzyme B is rapidly expressed and results in significant tumor cell death. In vivo, mice harboring human ovarian tumors had statistically significant clinical responses to SAGA treatment that were magnified following combination therapy with SAGA and paclitaxel. At the completion of a 3-week therapeutic trial, 3 of 15 animals were free of disease in the SAGA-treated group, and an additional eight animals had tumors that were nonpalpable and only detected on surgical resection. In contrast, 15 of 15 animals in the control and paclitaxel-only-treated groups had tumors at end of therapy. Treatment with SAGA with or without paclitaxel also prevented disease dissemination in 19 of 20 animals. These results strongly suggest that SAGA has the potential to be a potent agent for the treatment of primary and recurrent human ovarian carcinoma. Moreover, we predict that SAGA will be useful therapeutically in any human cancer that expresses Survivin.
Insights
Survivin and Granzyme B-induced apoptosis (SAGA) therapy effectively targets tumor cells by activating Granzyme B. This novel approach shows significant promise for treating ovarian cancer, even when combined with paclitaxel.
Area of Science:
- Oncology
- Molecular Biology
- Gene Therapy
Background:
- Survivin is an anti-apoptotic protein overexpressed in cancers, contributing to therapeutic resistance.
- Granzyme B is a cytotoxic protein released by immune cells to induce cell death.
Purpose of the Study:
- To develop a novel molecular agent, SAGA, that specifically activates Granzyme B within tumor cells.
- To evaluate the efficacy of SAGA in treating human ovarian tumors in vivo.
Main Methods:
- Constructed SAGA by fusing the Survivin promoter to the Granzyme B coding sequence.
- Transfected cultured human tumor cells with SAGA DNA.
- Administered SAGA therapy, alone and in combination with paclitaxel, to mice with human ovarian tumors.
Main Results:
- SAGA induced rapid Granzyme B expression and significant tumor cell death in vitro.
- SAGA treatment led to statistically significant clinical responses in mice with ovarian tumors.
- Combination therapy with SAGA and paclitaxel enhanced treatment efficacy, with some animals achieving disease-free status.
Conclusions:
- SAGA demonstrates potent anti-tumor activity against ovarian carcinoma.
- SAGA holds potential as a therapeutic agent for various Survivin-expressing human cancers.
- Combination therapy may improve outcomes for patients with ovarian cancer.
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