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  4. Molecular and immuno-characteristics of immunoglobulin-like glycoproteins in cancer cell-expressed biomarker, CA215
 
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Molecular and immuno-characteristics of immunoglobulin-like glycoproteins in cancer cell-expressed biomarker, CA215

Journal
Immunological Investigations
Journal Volume
41
Journal Issue
4
Pages
429-446
Date Issued
2012
Author(s)
Lee G.
Cheung A.P.
Li B.
Ge B.
PO-MING CHOW  
DOI
10.3109/08820139.2012.661007
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/452955
Abstract
RP215 monoclonal antibody (Mab) was shown to recognize a specific carbohydrate-associated epitope found in cancer cell-expressed glycoproteins, known as CA215. The membrane-bound and soluble forms of CA215 were detected in almost all of the cancer cells in humans, but rarely found in normal tissues. Through MALDI-TOF MS analysis, it has been reported previously that as much as 40% of the detected tryptic peptides of CA215 showed high degrees of sequence homology to those found in immunoglobulin heavy chains. The cancer cell-derived immunoglobulins were further purified from CA215 by affinity column-linked with goat anti-human IgG for molecular characterizations. Semi-quantitative RT-PCR was used to determine the mRNA levels of various immunoglobulin genes expressed by cancer cells of single or multi-cell origins and compared with those found in normal human serum. The stability of CA215 was investigated under different experimental conditions. It was observed that the RP215-specific epitope in CA215 is stable at neutral pH, in human serum or in mice (half life of 5-18 days), but unstable at extreme pH's (pH ? 2.0; pH ? 12.0) or high temperatures. Enzyme immunoassays were performed with several secondary antibody probes related to human IgG. It was demonstrated that cancer cell-expressed immunoglobulins with RP215-specific epitope have much lower immunoactivity than that of normal human IgG (? 5%), despite the fact that both showed almost identical amino acid sequence in the respective Fc region reported previously. This could be the result of aberrant glycosylation of CA215 in cancer cells. Aberrant glycosylation of glycoproteins may have important biological implications on the proliferation of cancer cells in vitro or in vivo. Copyright ? Informa Healthcare USA, Inc.
Subjects
CA215; CA215 immunoactivity; CA215 stability; Cancer cell-derived immunoglobulins; Carbohydrate-associated epitope; RP215
SDGs

[SDGs]SDG3

Other Subjects
CA 125 antigen; immunoglobulin; messenger RNA; affinity chromatography; antigen detection; article; blood pH; enzyme immunoassay; high temperature; matrix assisted laser desorption ionization time of flight mass spectrometry; molecular stability; plasma half life; priority journal; reverse transcription polymerase chain reaction; Antigens, Neoplasm; Epitopes; Glycoproteins; Humans; Hydrogen-Ion Concentration; Immunoglobulin G; Immunoglobulins; RNA, Messenger
Type
journal article

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