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Protease-activated receptor-1 impedes prostate and intestinal tumor progression in mice
G N Adams1, B K Sharma1, L Rosenfeldt1
1Cancer and Blood Diseases Institute, Cincinnati Children's Hospital Medical Center, University of Cincinnati College of Medicine, Cincinnati, OH, USA.
Abstract:
Essentials Protease activated receptor-1 (PAR-1) has been proposed to drive cancer progression. Surprisingly, PAR-1 deletion accelerated tumor progression in two distinct experimental settings. PAR-1 deletion was shown to limit the apoptosis of transformed epithelial cells. Thrombin- and activated protein C-mediated PAR-1 activation have unique effects on tumor cell biology. SUMMARY: Background Multiple studies have implicated protease-activated receptor-1 (PAR-1), a G-protein-coupled receptor activated by proteolytic cleavage of its N-terminus, as one target coupling thrombin-mediated proteolysis to tumor progression. Objective To analyze the role of PAR-1 in the setting of two distinct spontaneously developing tumor models in mice. Methods We interbred PAR-1-deficient mice with Transgenic Adenocarcinoma of the Mouse Prostate (TRAMP) mice, which spontaneously develop prostate tumors, and adenomatous polyposis coli Min (APCMin/+ ) mice, which spontaneously develop intestinal adenomas. Results Analyses of TRAMP mice with advanced disease (30 weeks) revealed that PAR-1 deficiency resulted in significantly larger and more aggressive prostate tumors. Prostates collected at an earlier time point (12 weeks of age) revealed that PAR-1 promotes apoptosis in transformed epithelia. In vitro analyses of TRAMP-derived cells revealed that activated protein C-mediated PAR-1 cleavage can induce tumor cell apoptosis, suggesting that tumor cell-intrinsic PAR-1 functions can limit tumor progression. Paralleling results in TRAMP mice, PAR-1-deficient APCMin/+ mice developed three-fold more adenomas than PAR-1-expressing mice, and the adenomas that formed were significantly larger. Moreover, loss of PAR-1 expression was shown to limit apoptosis in transformed intestinal epithelial cells. Conclusions Together, these results demonstrate a previously unrecognized role for PAR-1 in impeding tumor progression in vivo. These results also offer a cautionary note suggesting that long-term PAR-1 inhibition could increase malignancy risk in some contexts.
Insights
Protease-activated receptor-1 (PAR-1) surprisingly impedes tumor progression by promoting apoptosis in transformed cells. PAR-1 deficiency accelerates cancer in mouse models, suggesting caution with long-term PAR-1 inhibition.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Protease-activated receptor-1 (PAR-1) is implicated in cancer progression.
- PAR-1 is a G-protein-coupled receptor activated by proteolytic cleavage.
- Its role in tumor development is complex and warrants further investigation.
Purpose of the Study:
- To investigate the role of PAR-1 in two distinct spontaneous mouse tumor models.
- To analyze how PAR-1 deficiency affects tumor progression and apoptosis.
Main Methods:
- Utilized PAR-1-deficient mice crossed with Transgenic Adenocarcinoma of the Mouse Prostate (TRAMP) and APCMin/+ models.
- Analyzed tumor size, aggressiveness, and apoptosis rates in PAR-1 deficient and proficient mice.
- Conducted in vitro studies on TRAMP-derived cells.
Main Results:
- PAR-1 deficiency accelerated prostate tumor growth and aggressiveness in TRAMP mice.
- Loss of PAR-1 limited apoptosis in transformed epithelial cells in both TRAMP and APCMin/+ models.
- PAR-1-deficient APCMin/+ mice developed significantly more and larger intestinal adenomas.
Conclusions:
- PAR-1 plays a crucial role in impeding tumor progression in vivo.
- PAR-1 activation promotes apoptosis in transformed cells, limiting malignancy.
- Long-term PAR-1 inhibition may increase malignancy risk in certain contexts.
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