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A growth-regulated protease activity that is inhibited by the anticarcinogenic Bowman-Birk protease inhibitor
1Department of Radiation Oncology, University of Pennsylvania School of Medicine, Philadelphia 19104.
Abstract:
The Bowman-Birk protease inhibitor (BBI) has been shown to be an effective suppressor of carcinogenesis in vivo and in vitro. To elucidate the mechanism(s) by which BBI suppresses carcinogenesis, we believe it will be necessary to identify and characterize the target enzymes that specifically interact with the BBI. We have shown previously that several cellular proteins in C3H/10T1/2 mouse embryo fibroblast cells specifically bind to a BBI affinity resin. In the current report, we demonstrate that one of these proteins has proteolytic activity as judged by its ability to degrade gelatin. The enzyme has a mass of 45 kDa and subcellular fractionation experiments demonstrate that this enzyme is located in the cytosol. Furthermore, the proteolytic activity was inhibited by diisopropylfluorophosphate but was not affected by EDTA, indicating that this enzyme is a serine protease. Higher levels of protease activity were found in logarithmic-phase C3H/10T1/2 cells compared with nondividing (confluent) cells, suggesting that this protease activity is growth regulated. Similar levels of this activity were present in nontransformed and in radiation-transformed C3H/10T1/2 cells. Treatment of nontransformed C3H/10T1/2 cells with phorbol 12-myristate 13-acetate increased the specific activity of this protease 5- to 10-fold. Our results suggest that this protease is a target enzyme of the BBI in these cells.
Insights
Bowman-Birk protease inhibitor (BBI) targets a 45 kDa serine protease in mouse cells, aiding in understanding cancer suppression mechanisms. This growth-regulated enzyme
Area of Science:
- Biochemistry
- Molecular Biology
- Cancer Research
Background:
- Bowman-Birk protease inhibitor (BBI) is a known suppressor of carcinogenesis.
- Understanding BBI's mechanism requires identifying its target enzymes.
- Previous studies identified cellular proteins binding to BBI in C3H/10T1/2 cells.
Purpose of the Study:
- To identify and characterize enzymes that specifically interact with BBI.
- To elucidate the mechanism of BBI's anti-carcinogenic effects.
Main Methods:
- BBI affinity chromatography to isolate binding proteins.
- Gelatin zymography to assess proteolytic activity.
- Subcellular fractionation to determine enzyme localization.
- Enzyme inhibition assays (diisopropylfluorophosphate, EDTA) to classify protease type.
Main Results:
- A 45 kDa protein with gelatinolytic activity was identified.
- The enzyme is a cytosolic serine protease, inhibited by diisopropylfluorophosphate.
- Protease activity is growth-regulated and increased by phorbol 12-myristate 13-acetate treatment.
- Similar protease levels were found in normal and radiation-transformed cells.
Conclusions:
- A 45 kDa serine protease in C3H/10T1/2 cells is a likely target enzyme of BBI.
- This protease's activity is linked to cell growth and can be modulated by specific agents.
- Findings contribute to understanding BBI's role in cancer suppression.