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Published on: July 11, 2015
Characterization of antibodies against the replication protein (Rep) encoded by bovine meat and milk factors (BMMFs)
Veronika Frehtman1, Gunjan Shukla2, Michael Gentz1
1German Cancer Research Center, Biopharmaceutical Processing and Development Unit, Im Neuenheimer Feld 280, 69120, Heidelberg, Germany.
Abstract:
Bovine Meat and Milk Factors (BMMFs) are DNA elements with similarity to bacterial plasmids, are frequently identified in bovine meat and milk and were proposed to contribute to cancer development. All known BMMFs encode a conserved replication protein (Rep), allowing for histologic BMMF detection in clinical specimens based on Rep-directed mouse monoclonal antibodies (mAbs), which, however, have only been partially characterized so far. Here, 20 anti-BMMF Rep antibodies were assessed for biophysical properties, reactivity, specificity and binding sensitivity to five distinct BMMF Reps and other prokaryotic/eukaryotic target antigens using an enzyme-linked immunosorbent assay (ELISA)-based anti-BMMF Rep antibody binding assay. We demonstrated sensitive and specific antibody reaction with their respective Rep targets, according to the antibody immunization. Consensus antibodies raised against defined peptides of conserved Rep amino acid stretches interacted with most of the Rep antigens. Antibodies produced based on immunization with the Rep encoded on the BMMF isolate H1MSB.1, including rabbit and human chimeric variants, reacted only with the cognate H1MSB.1 Rep, with only two outliers targeting additional Reps. Completely new antibodies raised against the Rep of another isolate (C1HB.4) specifically detected the cognate C1HB.4 Rep antigen - not interacting with other Reps. New antibodies generated by triple Rep immunization (H1MSB.2/C1MI.3M.1/C1MI.9M.1 Rep) reacted to either all three or two immunization antigens without interacting with any other Reps. None of the antibodies cross-reacted against Reps of bacteria occurring during milk production or lysates of mammalian hosts. Competitive inhibition confirmed antigen-specificity across the antibody panel, which additionally did not show aberrancies concerning purity or antibody size for the majority of the tested Abs. These findings authenticate a highly specific panel of anti-BMMF Rep antibodies, which can serve as tools for BMMF detection in cancer and chronic diseases. KEY POINTS: • Anti-BMMF Rep antibodies are important to judge BMMFs' role as cancer risk factors. • Selective binding of anti-BMMF Rep antibodies to BMMF Rep antigens. • No cross-reactivity of anti-BMMF Rep antibodies with bacterial and mammalian outgroup specimens.
Insights
Bovine Meat and Milk Factors (BMMFs) are DNA elements linked to cancer. New anti-BMMF Rep antibodies show high specificity for detecting these factors in clinical samples, aiding cancer research.
Area of Science:
- Molecular Biology
- Immunology
- Oncology
Background:
- Bovine Meat and Milk Factors (BMMFs) are DNA elements implicated in cancer development.
- BMMFs encode a replication protein (Rep), essential for their detection.
- Existing antibodies for BMMF detection require further characterization.
Purpose of the Study:
- To assess the reactivity, specificity, and sensitivity of anti-BMMF Rep antibodies.
- To validate antibodies for reliable BMMF detection in clinical specimens.
- To authenticate a panel of antibodies for cancer and chronic disease research.
Main Methods:
- Enzyme-linked immunosorbent assay (ELISA) to test 20 anti-BMMF Rep antibodies.
- Assessment of antibody binding to five distinct BMMF Reps and other antigens.
- Competitive inhibition assays to confirm antigen specificity.
Main Results:
- Demonstrated sensitive and specific antibody reactions with target Rep antigens.
- Consensus antibodies recognized multiple Rep antigens; specific antibodies recognized cognate Reps.
- No cross-reactivity observed with bacterial or mammalian outgroup specimens.
Conclusions:
- A highly specific panel of anti-BMMF Rep antibodies has been authenticated.
- These antibodies are valuable tools for BMMF detection in cancer and chronic diseases.
- Validated antibodies will advance understanding of BMMFs' role in cancer etiology.
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