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Published on: December 7, 2014
Abl kinases can function as suppressors of tumor progression and metastasis
Melissa A Marchal1, Devon L Moose2, Afshin Varzavand1
1Department of Biology, College of Liberal Arts and Sciences, University of Iowa, Iowa City, IA, United States.
Introduction:
Abl family kinases function as proto-oncogenes in various leukemias, and pro-tumor functions have been discovered for Abl kinases in many solid tumors as well. However, a growing body of evidence indicates that Abl kinases can function to suppress tumor cell proliferation and motility and tumor growth in vivo in some settings.
Methods:
To investigate the role of Abl kinases in tumor progression, we used RNAi to generate Abl-deficient cells in a model of androgen receptor-indifferent, metastatic prostate cancer. The effect of Abl kinase depletion on tumor progression and metastasis was studied in an in vivo orthotopic model, and tumor cell motility, 3D growth, and signaling was studied in vitro.
Results:
Reduced Abl family kinase expression resulted in a highly aggressive, metastatic phenotype in vivo that was associated with AKT pathway activation, increased growth on 3D collagen matrix, and enhanced cell motility in vitro. Inhibiting AKT pathway signaling abolished the increased 3D growth of Abl-deficient cells, while treatment with the Abl kinase inhibitor, imatinib, promoted 3D growth of multiple additional tumor cell types. Moreover, Abl kinase inhibition also promoted soft-agar colony formation by pre-malignant fibroblasts.
Conclusions:
Collectively, our data reveal that Abl family kinases can function to suppress malignant cell phenotypes in vitro, and tumor progression and metastasis in vivo.
Insights
Abl family kinases suppress tumor progression and metastasis. Abl kinase deficiency promotes aggressive cancer phenotypes, highlighting their tumor-suppressive role in certain cancers.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Abl family kinases are implicated as proto-oncogenes in leukemia and have pro-tumor roles in solid tumors.
- Emerging evidence suggests Abl kinases can suppress tumor cell proliferation, motility, and growth in specific contexts.
Purpose of the Study:
- To investigate the role of Abl kinases in prostate cancer progression and metastasis.
- To elucidate the effects of Abl kinase depletion on tumor cell behavior and signaling pathways.
Main Methods:
- Utilized RNA interference (RNAi) to create Abl-deficient prostate cancer cells.
- Employed an in vivo orthotopic model to study tumor progression and metastasis.
- Assessed tumor cell motility, 3D growth, and signaling pathways in vitro.
Main Results:
- Abl kinase deficiency led to increased aggressiveness, metastasis, AKT pathway activation, enhanced 3D collagen matrix growth, and cell motility.
- Inhibition of the AKT pathway reversed the increased 3D growth in Abl-deficient cells.
- Imatinib treatment and Abl kinase inhibition promoted 3D growth in various tumor cells and fibroblast colony formation.
Conclusions:
- Abl family kinases exhibit tumor-suppressive functions against malignant phenotypes in vitro.
- Abl kinases play a critical role in suppressing tumor progression and metastasis in vivo.
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