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Glycosylation Status of CD43 Protein Is Associated with Resistance of Leukemia Cells to CTL-Mediated Cytolysis

To improve cancer immunotherapy, it is important to understand how tumor cells counteract immune-surveillance. In this study, we sought to identify cell-surface molecules associated with resistance of leukemia cells to cytotoxic T cell (CTL)-mediated cytolysis. To this end, we first established thou...

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Autores principales: Hasegawa, Kana, Tanaka, Satomi, Fujiki, Fumihiro, Morimoto, Soyoko, Nakano, Katsuhiko, Kinoshita, Hiroko, Okumura, Atsushi, Fujioka, Yuka, Urakawa, Rika, Nakajima, Hiroko, Tatsumi, Naoya, Nakata, Jun, Takashima, Satoshi, Nishida, Sumiyuki, Tsuboi, Akihiro, Oka, Yoshihiro, Oji, Yusuke, Miyoshi, Eiji, Hirata, Takako, Kumanogoh, Atsushi, Sugiyama, Haruo, Hosen, Naoki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4806926/
https://www.ncbi.nlm.nih.gov/pubmed/27011118
http://dx.doi.org/10.1371/journal.pone.0152326
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author Hasegawa, Kana
Tanaka, Satomi
Fujiki, Fumihiro
Morimoto, Soyoko
Nakano, Katsuhiko
Kinoshita, Hiroko
Okumura, Atsushi
Fujioka, Yuka
Urakawa, Rika
Nakajima, Hiroko
Tatsumi, Naoya
Nakata, Jun
Takashima, Satoshi
Nishida, Sumiyuki
Tsuboi, Akihiro
Oka, Yoshihiro
Oji, Yusuke
Miyoshi, Eiji
Hirata, Takako
Kumanogoh, Atsushi
Sugiyama, Haruo
Hosen, Naoki
author_facet Hasegawa, Kana
Tanaka, Satomi
Fujiki, Fumihiro
Morimoto, Soyoko
Nakano, Katsuhiko
Kinoshita, Hiroko
Okumura, Atsushi
Fujioka, Yuka
Urakawa, Rika
Nakajima, Hiroko
Tatsumi, Naoya
Nakata, Jun
Takashima, Satoshi
Nishida, Sumiyuki
Tsuboi, Akihiro
Oka, Yoshihiro
Oji, Yusuke
Miyoshi, Eiji
Hirata, Takako
Kumanogoh, Atsushi
Sugiyama, Haruo
Hosen, Naoki
author_sort Hasegawa, Kana
collection PubMed
description To improve cancer immunotherapy, it is important to understand how tumor cells counteract immune-surveillance. In this study, we sought to identify cell-surface molecules associated with resistance of leukemia cells to cytotoxic T cell (CTL)-mediated cytolysis. To this end, we first established thousands of monoclonal antibodies (mAbs) that react with MLL/AF9 mouse leukemia cells. Only two of these mAbs, designated R54 and B2, bound preferentially to leukemia cells resistant to cytolysis by a tumor cell antigen–specific CTLs. The antigens recognized by these mAbs were identified by expression cloning as the same protein, CD43, although their binding patterns to subsets of hematopoietic cells differed significantly from each other and from a pre-existing pan-CD43 mAb, S11. The epitopes of R54 and B2, but not S11, were sialidase-sensitive and expressed at various levels on leukemia cells, suggesting that binding of R54 or B2 is associated with the glycosylation status of CD43. R54(high) leukemia cells, which are likely to express sialic acid-rich CD43, were highly resistant to CTL-mediated cytolysis. In addition, loss of CD43 in leukemia cells or neuraminidase treatment of leukemia cells sensitized leukemia cells to CTL-mediated cell lysis. These results suggest that sialic acid-rich CD43, which harbors multiple sialic acid residues that impart a net negative surface charge, protects leukemia cells from CTL-mediated cell lysis. Furthermore, R54(high) or B2(high) leukemia cells preferentially survived in vivo in the presence of adaptive immunity. Taken together, these results suggest that the glycosylation status of CD43 on leukemia is associated with sensitivity to CTL-mediated cytolysis in vitro and in vivo. Thus, regulation of CD43 glycosylation is a potential strategy for enhancing CTL-mediated immunotherapy.
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spelling pubmed-48069262016-03-25 Glycosylation Status of CD43 Protein Is Associated with Resistance of Leukemia Cells to CTL-Mediated Cytolysis Hasegawa, Kana Tanaka, Satomi Fujiki, Fumihiro Morimoto, Soyoko Nakano, Katsuhiko Kinoshita, Hiroko Okumura, Atsushi Fujioka, Yuka Urakawa, Rika Nakajima, Hiroko Tatsumi, Naoya Nakata, Jun Takashima, Satoshi Nishida, Sumiyuki Tsuboi, Akihiro Oka, Yoshihiro Oji, Yusuke Miyoshi, Eiji Hirata, Takako Kumanogoh, Atsushi Sugiyama, Haruo Hosen, Naoki PLoS One Research Article To improve cancer immunotherapy, it is important to understand how tumor cells counteract immune-surveillance. In this study, we sought to identify cell-surface molecules associated with resistance of leukemia cells to cytotoxic T cell (CTL)-mediated cytolysis. To this end, we first established thousands of monoclonal antibodies (mAbs) that react with MLL/AF9 mouse leukemia cells. Only two of these mAbs, designated R54 and B2, bound preferentially to leukemia cells resistant to cytolysis by a tumor cell antigen–specific CTLs. The antigens recognized by these mAbs were identified by expression cloning as the same protein, CD43, although their binding patterns to subsets of hematopoietic cells differed significantly from each other and from a pre-existing pan-CD43 mAb, S11. The epitopes of R54 and B2, but not S11, were sialidase-sensitive and expressed at various levels on leukemia cells, suggesting that binding of R54 or B2 is associated with the glycosylation status of CD43. R54(high) leukemia cells, which are likely to express sialic acid-rich CD43, were highly resistant to CTL-mediated cytolysis. In addition, loss of CD43 in leukemia cells or neuraminidase treatment of leukemia cells sensitized leukemia cells to CTL-mediated cell lysis. These results suggest that sialic acid-rich CD43, which harbors multiple sialic acid residues that impart a net negative surface charge, protects leukemia cells from CTL-mediated cell lysis. Furthermore, R54(high) or B2(high) leukemia cells preferentially survived in vivo in the presence of adaptive immunity. Taken together, these results suggest that the glycosylation status of CD43 on leukemia is associated with sensitivity to CTL-mediated cytolysis in vitro and in vivo. Thus, regulation of CD43 glycosylation is a potential strategy for enhancing CTL-mediated immunotherapy. Public Library of Science 2016-03-24 /pmc/articles/PMC4806926/ /pubmed/27011118 http://dx.doi.org/10.1371/journal.pone.0152326 Text en © 2016 Hasegawa et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Hasegawa, Kana
Tanaka, Satomi
Fujiki, Fumihiro
Morimoto, Soyoko
Nakano, Katsuhiko
Kinoshita, Hiroko
Okumura, Atsushi
Fujioka, Yuka
Urakawa, Rika
Nakajima, Hiroko
Tatsumi, Naoya
Nakata, Jun
Takashima, Satoshi
Nishida, Sumiyuki
Tsuboi, Akihiro
Oka, Yoshihiro
Oji, Yusuke
Miyoshi, Eiji
Hirata, Takako
Kumanogoh, Atsushi
Sugiyama, Haruo
Hosen, Naoki
Glycosylation Status of CD43 Protein Is Associated with Resistance of Leukemia Cells to CTL-Mediated Cytolysis
title Glycosylation Status of CD43 Protein Is Associated with Resistance of Leukemia Cells to CTL-Mediated Cytolysis
title_full Glycosylation Status of CD43 Protein Is Associated with Resistance of Leukemia Cells to CTL-Mediated Cytolysis
title_fullStr Glycosylation Status of CD43 Protein Is Associated with Resistance of Leukemia Cells to CTL-Mediated Cytolysis
title_full_unstemmed Glycosylation Status of CD43 Protein Is Associated with Resistance of Leukemia Cells to CTL-Mediated Cytolysis
title_short Glycosylation Status of CD43 Protein Is Associated with Resistance of Leukemia Cells to CTL-Mediated Cytolysis
title_sort glycosylation status of cd43 protein is associated with resistance of leukemia cells to ctl-mediated cytolysis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4806926/
https://www.ncbi.nlm.nih.gov/pubmed/27011118
http://dx.doi.org/10.1371/journal.pone.0152326
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