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Erschienen in: Cancer Chemotherapy and Pharmacology 4/2003

01.10.2003 | Original Article

Targeting of a novel fusion protein containing methioninase to the urokinase receptor to inhibit breast cancer cell migration and proliferation

verfasst von: Karine Peron, Tara N. Jones, Sebastien A. Gauthier, Thao-Nguyen T. Nguyen, Xiao-Ping Zang, Magali Barriere, Damien Prévéraud, Charles E. Soliman, Roger G. Harrison, J. Thomas Pento

Erschienen in: Cancer Chemotherapy and Pharmacology | Ausgabe 4/2003

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Abstract

It has been shown that methionine depletion inhibits tumor cell growth and reduces tumor cell survival. A novel fusion protein targeted specifically to tumor cells was developed. The fusion protein contained two components: the amino terminal fragment of human urokinase (amino acids 1–49) that binds to the urokinase receptor protein expressed on the surface of invasive cancer cells, and the enzyme l-methioninase (containing 398 amino acids) which depletes methionine and arrests the growth of methionine-dependent tumors. The influence of the fusion protein on the growth and motility of human breast cancer cells was examined using a culture wounding assay. It was determined that MCF-7 breast cancer cells, used in this study, were methionine-dependent and that the fusion protein bound specifically to urokinase receptors of the surface of the cancer cells. Further treatment of the cancer cells with fusion protein over the concentration range 10−8 to 10−6  M produced a dose-dependent inhibition of both the migration and proliferation index of MCF-7 cells in the culture wounding assay over a period of 1 to 3 days. The results of this study suggest that this novel fusion protein may serve as a prototype for specific targeting of methioninase and perhaps other cytotoxic agents to cancer cells.
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Metadaten
Titel
Targeting of a novel fusion protein containing methioninase to the urokinase receptor to inhibit breast cancer cell migration and proliferation
verfasst von
Karine Peron
Tara N. Jones
Sebastien A. Gauthier
Thao-Nguyen T. Nguyen
Xiao-Ping Zang
Magali Barriere
Damien Prévéraud
Charles E. Soliman
Roger G. Harrison
J. Thomas Pento
Publikationsdatum
01.10.2003
Verlag
Springer-Verlag
Erschienen in
Cancer Chemotherapy and Pharmacology / Ausgabe 4/2003
Print ISSN: 0344-5704
Elektronische ISSN: 1432-0843
DOI
https://doi.org/10.1007/s00280-003-0666-0

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