Immunoreactivity of humanized single-chain variable fragment against its functional epitope on domain 1 of CD147

Domain 1 of CD147 participates in matrix metalloproteinase (MMP) production and is a candidate for targeted therapy to prevent cancer invasion and metastasis. A functional mouse anti-CD147 monoclonal antibody, M6-1B9, was found to recognize domain 1 of CD147, and its respective mouse single-chain va...

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Main Author: Intasai N.
Other Authors: Mahidol University
Format: Article
Published: 2023
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Online Access:https://repository.li.mahidol.ac.th/handle/123456789/87546
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spelling th-mahidol.875462023-06-22T18:14:20Z Immunoreactivity of humanized single-chain variable fragment against its functional epitope on domain 1 of CD147 Intasai N. Mahidol University Multidisciplinary Domain 1 of CD147 participates in matrix metalloproteinase (MMP) production and is a candidate for targeted therapy to prevent cancer invasion and metastasis. A functional mouse anti-CD147 monoclonal antibody, M6-1B9, was found to recognize domain 1 of CD147, and its respective mouse single-chain variable fragment (ScFvM61B9) was subsequently generated. The EDLGS epitope candidate for M6-1B9 was identified using the phage display peptide technique in this study. For future clinical applications, humanized ScFv specific to domain 1 of CD147 (HuScFvM61B9) was partially adopted from the hypervariable sequences of parental mouse ScFvM61B9 and grafted onto suitable human immunoglobulin frameworks. Molecular modelling and simulation were performed in silico to generate the conformational structure of HuScFvM61B9. These results elucidated the amino acid residues that contributed to the interactions between CDRs and the epitope motif. The expressed HuScFvM61B9 specifically interacted with CD147 at the same epitope as the original mAb, M6-1B9, and retained immunoreactivity against CD147 in SupT1 cells. The reactivity of HuScFvM61B9 was confirmed using CD147 knockout Jurkat cells. In addition, the inhibitory effect of HuScFvM61B9 on OKT3-induced T-cell proliferation as M6-1B9 mAb was preserved. As domain 1 is responsible for cancer invasion and metastasis, HuScFvM61B9 would be a candidate for cancer targeted therapy in the future. 2023-06-22T11:14:20Z 2023-06-22T11:14:20Z 2022-12-01 Article Scientific Reports Vol.12 No.1 (2022) 10.1038/s41598-022-10657-3 20452322 35468972 2-s2.0-85128855102 https://repository.li.mahidol.ac.th/handle/123456789/87546 SCOPUS
institution Mahidol University
building Mahidol University Library
continent Asia
country Thailand
Thailand
content_provider Mahidol University Library
collection Mahidol University Institutional Repository
topic Multidisciplinary
spellingShingle Multidisciplinary
Intasai N.
Immunoreactivity of humanized single-chain variable fragment against its functional epitope on domain 1 of CD147
description Domain 1 of CD147 participates in matrix metalloproteinase (MMP) production and is a candidate for targeted therapy to prevent cancer invasion and metastasis. A functional mouse anti-CD147 monoclonal antibody, M6-1B9, was found to recognize domain 1 of CD147, and its respective mouse single-chain variable fragment (ScFvM61B9) was subsequently generated. The EDLGS epitope candidate for M6-1B9 was identified using the phage display peptide technique in this study. For future clinical applications, humanized ScFv specific to domain 1 of CD147 (HuScFvM61B9) was partially adopted from the hypervariable sequences of parental mouse ScFvM61B9 and grafted onto suitable human immunoglobulin frameworks. Molecular modelling and simulation were performed in silico to generate the conformational structure of HuScFvM61B9. These results elucidated the amino acid residues that contributed to the interactions between CDRs and the epitope motif. The expressed HuScFvM61B9 specifically interacted with CD147 at the same epitope as the original mAb, M6-1B9, and retained immunoreactivity against CD147 in SupT1 cells. The reactivity of HuScFvM61B9 was confirmed using CD147 knockout Jurkat cells. In addition, the inhibitory effect of HuScFvM61B9 on OKT3-induced T-cell proliferation as M6-1B9 mAb was preserved. As domain 1 is responsible for cancer invasion and metastasis, HuScFvM61B9 would be a candidate for cancer targeted therapy in the future.
author2 Mahidol University
author_facet Mahidol University
Intasai N.
format Article
author Intasai N.
author_sort Intasai N.
title Immunoreactivity of humanized single-chain variable fragment against its functional epitope on domain 1 of CD147
title_short Immunoreactivity of humanized single-chain variable fragment against its functional epitope on domain 1 of CD147
title_full Immunoreactivity of humanized single-chain variable fragment against its functional epitope on domain 1 of CD147
title_fullStr Immunoreactivity of humanized single-chain variable fragment against its functional epitope on domain 1 of CD147
title_full_unstemmed Immunoreactivity of humanized single-chain variable fragment against its functional epitope on domain 1 of CD147
title_sort immunoreactivity of humanized single-chain variable fragment against its functional epitope on domain 1 of cd147
publishDate 2023
url https://repository.li.mahidol.ac.th/handle/123456789/87546
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