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Human breast cancer growth inhibited in vivo by a dominant negative pleiotrophin mutant
1Division of Growth Regulation, Department of Medicine, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, Massachusetts 02215, USA.
Abstract:
Pleiotrophin (PTN) is a recently described 18- kDa heparin binding growth/differentiation factor. It also is a proto-oncogene; cells transformed by the Ptn gene form highly angiogenic tumors when implanted into the nude mouse. PTN may be an important regulator of transformation in other tumors, because constitutively high levels of expression of the pleiotrophin (Ptn) gene are found in human breast cancer and other malignant cell lines, and its levels of expression are high in many human tumor specimens. To determine whether PTN is an important regulator of the malignant phenotype of human breast cancer cells, we constructed a mutant cDNA to encode a truncated PTN designed to heterodimerize with the product of the endogenous Ptn gene during processing. The mutant gene product blocked transformation of NIH 3T3 cells by the wild type (wt) Ptn gene product. The mutant Ptn cDNA was then introduced into human breast cancer MDA-MB-231 cells, and clonal lines that stably express the mutant Ptn cDNA were selected. The truncated PTN was shown to form heterodimers with the endogenous Ptn gene product in these cells. Furthermore, the MDA-MB-231 cells that express the mutant Ptn gene were no longer transformed; they failed to form plaques or colonies in soft agar and were unable to form tumors in the athymic nude mouse. The results establish an important role of PTN in the dysregulated growth of human breast cancer cells and suggest that constitutive expression of PTN may be essential to the malignant phenotype of human breast cancers in vivo.
Insights
Pleiotrophin (PTN) is a proto-oncogene driving breast cancer growth. Inhibiting PTN with a mutant form blocked cancer cell transformation and tumor formation in mice.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Pleiotrophin (PTN) is an 18-kDa heparin-binding growth factor.
- PTN functions as a proto-oncogene, promoting tumor angiogenesis.
- High PTN gene expression is observed in human breast cancer and other malignancies.
Purpose of the Study:
- To investigate the role of PTN in the malignant phenotype of human breast cancer cells.
- To determine if PTN is essential for the growth and progression of breast cancers.
Main Methods:
- Constructed a mutant PTN cDNA designed to interfere with endogenous PTN.
- Introduced the mutant PTN cDNA into human breast cancer MDA-MB-231 cells.
- Assessed the transformation and tumorigenicity of cells expressing mutant PTN.
Main Results:
- The mutant PTN product successfully heterodimerized with endogenous PTN.
- Cells expressing the mutant PTN lost their transformed characteristics.
- These cells failed to form colonies in soft agar and did not form tumors in nude mice.
Conclusions:
- PTN plays a critical role in the dysregulated growth of human breast cancer cells.
- Constitutive PTN expression is likely essential for the malignant phenotype of breast cancers in vivo.
- Targeting PTN offers a potential therapeutic strategy for breast cancer.