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Polymalic Acid-based Nano Biopolymers for Targeting of Multiple Tumor Markers: An Opportunity for Personalized Medicine?
Published on: June 13, 2014
Signal transduction by the neu/erbB-2 receptor: a potential target for anti-tumor therapy
I Stancovski1, E Peles, R Ben Levy
1Department of Chemical Immunology, Weizmann Institute of Science, Rehovot, Israel.
Abstract:
The neu/erbB-2 protooncogene encodes a transmembrane tyrosine kinase homologous to receptors for polypeptide growth factors. The oncogenic potential of the presumed receptor is released through multiple genetic mechanisms including a point mutation, truncation of non-catalytic sequences and overexpression. The latter mechanism appears to be relevant to human cancers as elevated expression of the neu/erbB-2 gene is frequently observed in solid tumors of various adenocarcinomas. It is therefore conceivable that strategies aimed at the biochemical mechanism of action of the neu/erbB-2 tyrosine kinase may contribute to the treatment of certain human cancers. To this aim we undertook a multiple research approach consisting of the following directions: (i) The neu/erbB-2 ligand--a systematic screening of potential biological sources of the hypothetical hormone molecule, that presumably binds to the neu/erbB-2 protein, resulted in detection of a candidate activity in the medium of certain cultured transformed cells. Partial purification indicated that the factor is a 30-35 kDa glycoprotein. Further studies revealed several biochemical characteristics of the factor that may be helpful for complete purification and structural analysis of this novel hormone. (ii) Signal transduction by neu/erbB-2--using a chimeric receptor approach and various mutants we found that all the oncogenic forms of the neu/erbB-2 are constitutively coupled, both physically and functionally, to a multi-protein complex of signaling molecules. The latter includes the phosphatidylinositol-specific phospholipase C gamma and a phosphatidylinositol kinase. Thus, the metabolism of inositol lipids is probably a major biochemical pathway utilized by the neu/erbB-2 tyrosine kinase. (iii) Tumor inhibitory antibodies--we generated a panel of monoclonal antibodies to the presumed receptor. Surprisingly, some antibodies almost completely inhibited the growth of tumor cells in athymic mice, whereas one antibody significantly accelerated the rate of tumor growth in animals. Interestingly, the inhibitory antibodies conferred a mature phenotype to cultured breast cancer cells, implicating terminal differentiation in tumor retardation.
Insights
The neu/erbB-2 protooncogene, implicated in cancers, was investigated for its ligand, signal transduction, and therapeutic antibodies. Inhibitory antibodies targeting neu/erbB-2 demonstrated tumor growth retardation in mice.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- The neu/erbB-2 protooncogene encodes a tyrosine kinase homologous to growth factor receptors.
- Overexpression of neu/erbB-2 is frequently observed in human adenocarcinomas, suggesting its role in cancer development.
- Targeting the neu/erbB-2 tyrosine kinase may offer therapeutic strategies for certain human cancers.
Purpose of the Study:
- To investigate the neu/erbB-2 ligand and its role in signal transduction.
- To explore the biochemical pathways utilized by neu/erbB-2.
- To develop and evaluate tumor inhibitory antibodies targeting neu/erbB-2.
Main Methods:
- Screening for neu/erbB-2 ligand activity in cultured cells and partial purification.
- Utilizing chimeric receptors and mutants to study neu/erbB-2 signal transduction pathways.
- Generating and testing monoclonal antibodies for anti-tumor activity in vitro and in vivo.
Main Results:
- A candidate neu/erbB-2 ligand, a 30-35 kDa glycoprotein, was detected and partially purified.
- Oncogenic neu/erbB-2 forms are constitutively coupled to signaling molecules, involving phosphatidylinositol lipid metabolism.
- Certain monoclonal antibodies inhibited tumor growth in mice and induced differentiation in breast cancer cells, while one antibody accelerated tumor growth.
Conclusions:
- The neu/erbB-2 ligand and its signal transduction pathways, particularly inositol lipid metabolism, are potential targets for cancer therapy.
- Tumor inhibitory antibodies against neu/erbB-2 show promise for cancer treatment by inhibiting tumor growth and promoting differentiation.
- Further research into neu/erbB-2 biology and antibody interactions is warranted for therapeutic development.
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