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Comparison of biological activities of human antithrombins with high-mannose or complex-type nonfucosylated N-linked oligosaccharides

The structure of the N-linked oligosaccharides attached to antithrombin (AT) has been shown to affect its anticoagulant activity and pharmacokinetics. Human AT has biantennary complex-type oligosaccharides with the unique feature of lacking a core fucose, which affects its biological activities by c...

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Autores principales: Yamada, Tsuyoshi, Kanda, Yutaka, Takayama, Makoto, Hashimoto, Akitoshi, Sugihara, Tsutomu, Satoh-Kubota, Ai, Suzuki-Takanami, Eri, Yano, Keiichi, Iida, Shigeru, Satoh, Mitsuo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4813732/
https://www.ncbi.nlm.nih.gov/pubmed/26747427
http://dx.doi.org/10.1093/glycob/cww001
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author Yamada, Tsuyoshi
Kanda, Yutaka
Takayama, Makoto
Hashimoto, Akitoshi
Sugihara, Tsutomu
Satoh-Kubota, Ai
Suzuki-Takanami, Eri
Yano, Keiichi
Iida, Shigeru
Satoh, Mitsuo
author_facet Yamada, Tsuyoshi
Kanda, Yutaka
Takayama, Makoto
Hashimoto, Akitoshi
Sugihara, Tsutomu
Satoh-Kubota, Ai
Suzuki-Takanami, Eri
Yano, Keiichi
Iida, Shigeru
Satoh, Mitsuo
author_sort Yamada, Tsuyoshi
collection PubMed
description The structure of the N-linked oligosaccharides attached to antithrombin (AT) has been shown to affect its anticoagulant activity and pharmacokinetics. Human AT has biantennary complex-type oligosaccharides with the unique feature of lacking a core fucose, which affects its biological activities by changing its heparin-binding affinity. In human plasma, AT circulates as a mixture of the α-form bearing four oligosaccharides and the β-form lacking an oligosaccharide at Asn135. However, it remains unclear how the immature high-mannose-type oligosaccharides produced by mammalian cells affect biological activities of AT. Here, we succeeded in directly comparing the activities between the high-mannose and complex types. Interestingly, although there were no substantial differences in thrombin inhibitory activity, the high-mannose type showed higher heparin-binding affinity. The anticoagulant activities were increased by heparin and correlated with the heparin-binding affinity, resulting in the strongest anticoagulant activity being displayed in the β-form with the high-mannose type. In pharmacokinetic profiling, the high-mannose type showed a much shorter plasma half-life than the complex type. The β-form was found to have a prolonged plasma half-life compared with the α-form for the high-mannose type; conversely, the α-form showed a longer half-life than the β-form for the complex-type. The present study highlights that AT physiological activities are strictly controlled not only by a core fucose at the reducing end but also by the high-mannose-type structures at the nonreducing end. The β-form with the immature high-mannose type appears to function as a more potent anticoagulant than the AT typically found in human plasma, once it emerges in the blood.
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spelling pubmed-48137322016-04-04 Comparison of biological activities of human antithrombins with high-mannose or complex-type nonfucosylated N-linked oligosaccharides Yamada, Tsuyoshi Kanda, Yutaka Takayama, Makoto Hashimoto, Akitoshi Sugihara, Tsutomu Satoh-Kubota, Ai Suzuki-Takanami, Eri Yano, Keiichi Iida, Shigeru Satoh, Mitsuo Glycobiology ORIGINAL ARTICLES The structure of the N-linked oligosaccharides attached to antithrombin (AT) has been shown to affect its anticoagulant activity and pharmacokinetics. Human AT has biantennary complex-type oligosaccharides with the unique feature of lacking a core fucose, which affects its biological activities by changing its heparin-binding affinity. In human plasma, AT circulates as a mixture of the α-form bearing four oligosaccharides and the β-form lacking an oligosaccharide at Asn135. However, it remains unclear how the immature high-mannose-type oligosaccharides produced by mammalian cells affect biological activities of AT. Here, we succeeded in directly comparing the activities between the high-mannose and complex types. Interestingly, although there were no substantial differences in thrombin inhibitory activity, the high-mannose type showed higher heparin-binding affinity. The anticoagulant activities were increased by heparin and correlated with the heparin-binding affinity, resulting in the strongest anticoagulant activity being displayed in the β-form with the high-mannose type. In pharmacokinetic profiling, the high-mannose type showed a much shorter plasma half-life than the complex type. The β-form was found to have a prolonged plasma half-life compared with the α-form for the high-mannose type; conversely, the α-form showed a longer half-life than the β-form for the complex-type. The present study highlights that AT physiological activities are strictly controlled not only by a core fucose at the reducing end but also by the high-mannose-type structures at the nonreducing end. The β-form with the immature high-mannose type appears to function as a more potent anticoagulant than the AT typically found in human plasma, once it emerges in the blood. Oxford University Press 2016-05 2016-01-07 /pmc/articles/PMC4813732/ /pubmed/26747427 http://dx.doi.org/10.1093/glycob/cww001 Text en © The Author 2016. Published by Oxford University Press. 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 reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle ORIGINAL ARTICLES
Yamada, Tsuyoshi
Kanda, Yutaka
Takayama, Makoto
Hashimoto, Akitoshi
Sugihara, Tsutomu
Satoh-Kubota, Ai
Suzuki-Takanami, Eri
Yano, Keiichi
Iida, Shigeru
Satoh, Mitsuo
Comparison of biological activities of human antithrombins with high-mannose or complex-type nonfucosylated N-linked oligosaccharides
title Comparison of biological activities of human antithrombins with high-mannose or complex-type nonfucosylated N-linked oligosaccharides
title_full Comparison of biological activities of human antithrombins with high-mannose or complex-type nonfucosylated N-linked oligosaccharides
title_fullStr Comparison of biological activities of human antithrombins with high-mannose or complex-type nonfucosylated N-linked oligosaccharides
title_full_unstemmed Comparison of biological activities of human antithrombins with high-mannose or complex-type nonfucosylated N-linked oligosaccharides
title_short Comparison of biological activities of human antithrombins with high-mannose or complex-type nonfucosylated N-linked oligosaccharides
title_sort comparison of biological activities of human antithrombins with high-mannose or complex-type nonfucosylated n-linked oligosaccharides
topic ORIGINAL ARTICLES
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4813732/
https://www.ncbi.nlm.nih.gov/pubmed/26747427
http://dx.doi.org/10.1093/glycob/cww001
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