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Monoclonal antibody that specifically inhibits a human M r 52,000 plasminogen-activating enzyme
Author(s) -
K. Kaltoft,
Lene Nielsen,
Jesper Zeuthen,
K. Danunk
Publication year - 1982
Publication title -
proceedings of the national academy of sciences
Language(s) - English
Resource type - Journals
eISSN - 1091-6490
pISSN - 0027-8424
DOI - 10.1073/pnas.79.12.3720
Subject(s) - microbiology and biotechnology , monoclonal antibody , plasminogen activator , enzyme , urokinase , antibody , affinity chromatography , activator (genetics) , biochemistry , biology , sepharose , chemistry , receptor , immunology , endocrinology , genetics
Monoclonal antibodies against a human plasminogen activator ofM r ≈52,000 (HPA52) were derived by immunization of mice with an impure preparation of the enzyme (urokinase), subsequent hybridization of spleen cells with NSI-Ag4/1 myeloma cells, and cloning of the hybridomas. Selection of mice for hybridization and screening of hybridomas were based solely on direct inhibition of an enzymatic assay of the plasminogen activator with the impure enzyme preparation. A cloned hybridoma produced IgG1 antibodies that bound to and inhibited the enzymatic activity of HPA52 irrespective of whether the HPA52 was derived from urokinase or from human glioblastoma cells, whereas there was no inhibition of or binding to a plasminogen activator ofM r ≈70,000 from human melanoma cells or a plasminogen activator ofM r ≈36,000 that is a degradation product of HPA52 and present in urokinase. Nor did the anti-HPA52 IgG1 inhibit a murine plasminogen activator ofM r ≈48,000 derived from sarcoma virus-transformed cells. By using affinity chromatography with columns of anti-HPA52 IgG1 bound to Sepharose, HPA52 was purified from urokinase to homogeneity as evaluated by NaDodSO4 /polyacrylamide gel electrophoresis. This study demonstrates that inhibitory monoclonal antibodies against enzymes can be derived with the sole use of impure enzyme preparations and shows how such antibodies subsequently can be used for enzyme purification.

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