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A Fucan Sulfate with Pentasaccharide Repeating Units from the Sea Cucumber Holothuria floridana and Its Anticoagulant Activity

A fucan sulfate (HfFS) was isolated from the sea cucumber Holothuria floridana after proteolysis-alkaline treatment and purified with anion-exchange chromatography. The molecular weight (Mw) of HfFS was determined to be 443.4 kDa, and the sulfate content of HfFS was 30.4%. The structural analysis of...

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Autores principales: Ning, Zimo, Wang, Pin, Zuo, Zhichuang, Tao, Xuelin, Gao, Li, Xu, Chen, Wang, Zhiyue, Wu, Bin, Gao, Na, Zhao, Jinhua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9230062/
https://www.ncbi.nlm.nih.gov/pubmed/35736180
http://dx.doi.org/10.3390/md20060377
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author Ning, Zimo
Wang, Pin
Zuo, Zhichuang
Tao, Xuelin
Gao, Li
Xu, Chen
Wang, Zhiyue
Wu, Bin
Gao, Na
Zhao, Jinhua
author_facet Ning, Zimo
Wang, Pin
Zuo, Zhichuang
Tao, Xuelin
Gao, Li
Xu, Chen
Wang, Zhiyue
Wu, Bin
Gao, Na
Zhao, Jinhua
author_sort Ning, Zimo
collection PubMed
description A fucan sulfate (HfFS) was isolated from the sea cucumber Holothuria floridana after proteolysis-alkaline treatment and purified with anion-exchange chromatography. The molecular weight (Mw) of HfFS was determined to be 443.4 kDa, and the sulfate content of HfFS was 30.4%. The structural analysis of the peroxidative depolymerized product (dHfFS-1) showed that the primary structure of HfFS was mainly composed of a distinct pentasaccharide repeating unit -[l-Fuc(2S4S)-α(1,3)-l-Fuc-α(1,3)-Fuc-α(1,3)-l-Fuc(2S)-α(1,3)-l-Fuc(2S)-α(1,3)-](n)-. Then, the “bottom-up” strategy was employed to confirm the structure of HfFS, and a series of fucooligosaccharides (disaccharides, trisaccharides, and tetrasaccharides) were purified from the mild acid-hydrolyzed HfFS. The structures identified through 1D/2D NMR spectra showed that these fucooligosaccharides could be derivates from the pentasaccharide units, while the irregular sulfate substituent also exists in the units. Anticoagulant activity assays of native HfFS and its depolymerized products (dHf-1~dHf-6) in vitro suggested that HfFS exhibits potent APTT-prolonging activity and the potencies decreased with the reduction in molecular weights, and HfFS fragments (dHf-4~dHf-6) with Mw less than 11.5 kDa showed no significant anticoagulant effect. Overall, our study enriched the knowledge about the structural diversity of FSs in different sea cucumber species and their biological activities.
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spelling pubmed-92300622022-06-25 A Fucan Sulfate with Pentasaccharide Repeating Units from the Sea Cucumber Holothuria floridana and Its Anticoagulant Activity Ning, Zimo Wang, Pin Zuo, Zhichuang Tao, Xuelin Gao, Li Xu, Chen Wang, Zhiyue Wu, Bin Gao, Na Zhao, Jinhua Mar Drugs Article A fucan sulfate (HfFS) was isolated from the sea cucumber Holothuria floridana after proteolysis-alkaline treatment and purified with anion-exchange chromatography. The molecular weight (Mw) of HfFS was determined to be 443.4 kDa, and the sulfate content of HfFS was 30.4%. The structural analysis of the peroxidative depolymerized product (dHfFS-1) showed that the primary structure of HfFS was mainly composed of a distinct pentasaccharide repeating unit -[l-Fuc(2S4S)-α(1,3)-l-Fuc-α(1,3)-Fuc-α(1,3)-l-Fuc(2S)-α(1,3)-l-Fuc(2S)-α(1,3)-](n)-. Then, the “bottom-up” strategy was employed to confirm the structure of HfFS, and a series of fucooligosaccharides (disaccharides, trisaccharides, and tetrasaccharides) were purified from the mild acid-hydrolyzed HfFS. The structures identified through 1D/2D NMR spectra showed that these fucooligosaccharides could be derivates from the pentasaccharide units, while the irregular sulfate substituent also exists in the units. Anticoagulant activity assays of native HfFS and its depolymerized products (dHf-1~dHf-6) in vitro suggested that HfFS exhibits potent APTT-prolonging activity and the potencies decreased with the reduction in molecular weights, and HfFS fragments (dHf-4~dHf-6) with Mw less than 11.5 kDa showed no significant anticoagulant effect. Overall, our study enriched the knowledge about the structural diversity of FSs in different sea cucumber species and their biological activities. MDPI 2022-06-03 /pmc/articles/PMC9230062/ /pubmed/35736180 http://dx.doi.org/10.3390/md20060377 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ning, Zimo
Wang, Pin
Zuo, Zhichuang
Tao, Xuelin
Gao, Li
Xu, Chen
Wang, Zhiyue
Wu, Bin
Gao, Na
Zhao, Jinhua
A Fucan Sulfate with Pentasaccharide Repeating Units from the Sea Cucumber Holothuria floridana and Its Anticoagulant Activity
title A Fucan Sulfate with Pentasaccharide Repeating Units from the Sea Cucumber Holothuria floridana and Its Anticoagulant Activity
title_full A Fucan Sulfate with Pentasaccharide Repeating Units from the Sea Cucumber Holothuria floridana and Its Anticoagulant Activity
title_fullStr A Fucan Sulfate with Pentasaccharide Repeating Units from the Sea Cucumber Holothuria floridana and Its Anticoagulant Activity
title_full_unstemmed A Fucan Sulfate with Pentasaccharide Repeating Units from the Sea Cucumber Holothuria floridana and Its Anticoagulant Activity
title_short A Fucan Sulfate with Pentasaccharide Repeating Units from the Sea Cucumber Holothuria floridana and Its Anticoagulant Activity
title_sort fucan sulfate with pentasaccharide repeating units from the sea cucumber holothuria floridana and its anticoagulant activity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9230062/
https://www.ncbi.nlm.nih.gov/pubmed/35736180
http://dx.doi.org/10.3390/md20060377
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