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Fucosylated Chondroitin Sulfates from the Sea Cucumbers Paracaudina chilensis and Holothuria hilla: Structures and Anticoagulant Activity

Fucosylated chondroitin sulfates (FCSs) PC and HH were isolated from the sea cucumbers Paracaudina chilensis and Holothuria hilla, respectively. The purification of the polysaccharides was carried out by anion-exchange chromatography on a DEAE-Sephacel column. The structural characterization of the...

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Autores principales: Ustyuzhanina, Nadezhda E., Bilan, Maria I., Dmitrenok, Andrey S., Silchenko, Alexandra S., Grebnev, Boris B., Stonik, Valentin A., Nifantiev, Nikolay E., Usov, Anatolii I.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7693656/
https://www.ncbi.nlm.nih.gov/pubmed/33126758
http://dx.doi.org/10.3390/md18110540
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author Ustyuzhanina, Nadezhda E.
Bilan, Maria I.
Dmitrenok, Andrey S.
Silchenko, Alexandra S.
Grebnev, Boris B.
Stonik, Valentin A.
Nifantiev, Nikolay E.
Usov, Anatolii I.
author_facet Ustyuzhanina, Nadezhda E.
Bilan, Maria I.
Dmitrenok, Andrey S.
Silchenko, Alexandra S.
Grebnev, Boris B.
Stonik, Valentin A.
Nifantiev, Nikolay E.
Usov, Anatolii I.
author_sort Ustyuzhanina, Nadezhda E.
collection PubMed
description Fucosylated chondroitin sulfates (FCSs) PC and HH were isolated from the sea cucumbers Paracaudina chilensis and Holothuria hilla, respectively. The purification of the polysaccharides was carried out by anion-exchange chromatography on a DEAE-Sephacel column. The structural characterization of the polysaccharides was performed in terms of monosaccharide and sulfate content, as well as using a series of nondestructive NMR spectroscopic methods. Both polysaccharides were shown to contain a chondroitin core [→3)-β-d-GalNAc (N-acethyl galactosamine)-(1→4)-β-d-GlcA (glucuronic acid)-(1→](n), bearing sulfated fucosyl branches at O-3 of every GlcA residue in the chain. These fucosyl residues were different in their pattern of sulfation: PC contained Fuc2S4S and Fuc4S in a ratio of 2:1, whereas HH included Fuc2S4S, Fuc3S4S, and Fuc4S in a ratio of 1.5:1:1. Moreover, some GalNAc residues in HH were found to contain an unusual disaccharide branch Fuc4S-(1→2)-Fuc3S4S-(1→ at O-6. Sulfated GalNAc4S6S and GalNAc4S units were found in a ratio of 3:2 in PC and 2:1 in HH. Both polysaccharides demonstrated significant anticoagulant activity in a clotting time assay, which is connected with the ability of these FCSs to potentiate the inhibition of thrombin and factor Xa in the presence of anti-thrombin III (ATIII) and with the direct inhibition of thrombin in the absence of any cofactors.
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spelling pubmed-76936562020-11-28 Fucosylated Chondroitin Sulfates from the Sea Cucumbers Paracaudina chilensis and Holothuria hilla: Structures and Anticoagulant Activity Ustyuzhanina, Nadezhda E. Bilan, Maria I. Dmitrenok, Andrey S. Silchenko, Alexandra S. Grebnev, Boris B. Stonik, Valentin A. Nifantiev, Nikolay E. Usov, Anatolii I. Mar Drugs Article Fucosylated chondroitin sulfates (FCSs) PC and HH were isolated from the sea cucumbers Paracaudina chilensis and Holothuria hilla, respectively. The purification of the polysaccharides was carried out by anion-exchange chromatography on a DEAE-Sephacel column. The structural characterization of the polysaccharides was performed in terms of monosaccharide and sulfate content, as well as using a series of nondestructive NMR spectroscopic methods. Both polysaccharides were shown to contain a chondroitin core [→3)-β-d-GalNAc (N-acethyl galactosamine)-(1→4)-β-d-GlcA (glucuronic acid)-(1→](n), bearing sulfated fucosyl branches at O-3 of every GlcA residue in the chain. These fucosyl residues were different in their pattern of sulfation: PC contained Fuc2S4S and Fuc4S in a ratio of 2:1, whereas HH included Fuc2S4S, Fuc3S4S, and Fuc4S in a ratio of 1.5:1:1. Moreover, some GalNAc residues in HH were found to contain an unusual disaccharide branch Fuc4S-(1→2)-Fuc3S4S-(1→ at O-6. Sulfated GalNAc4S6S and GalNAc4S units were found in a ratio of 3:2 in PC and 2:1 in HH. Both polysaccharides demonstrated significant anticoagulant activity in a clotting time assay, which is connected with the ability of these FCSs to potentiate the inhibition of thrombin and factor Xa in the presence of anti-thrombin III (ATIII) and with the direct inhibition of thrombin in the absence of any cofactors. MDPI 2020-10-28 /pmc/articles/PMC7693656/ /pubmed/33126758 http://dx.doi.org/10.3390/md18110540 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ustyuzhanina, Nadezhda E.
Bilan, Maria I.
Dmitrenok, Andrey S.
Silchenko, Alexandra S.
Grebnev, Boris B.
Stonik, Valentin A.
Nifantiev, Nikolay E.
Usov, Anatolii I.
Fucosylated Chondroitin Sulfates from the Sea Cucumbers Paracaudina chilensis and Holothuria hilla: Structures and Anticoagulant Activity
title Fucosylated Chondroitin Sulfates from the Sea Cucumbers Paracaudina chilensis and Holothuria hilla: Structures and Anticoagulant Activity
title_full Fucosylated Chondroitin Sulfates from the Sea Cucumbers Paracaudina chilensis and Holothuria hilla: Structures and Anticoagulant Activity
title_fullStr Fucosylated Chondroitin Sulfates from the Sea Cucumbers Paracaudina chilensis and Holothuria hilla: Structures and Anticoagulant Activity
title_full_unstemmed Fucosylated Chondroitin Sulfates from the Sea Cucumbers Paracaudina chilensis and Holothuria hilla: Structures and Anticoagulant Activity
title_short Fucosylated Chondroitin Sulfates from the Sea Cucumbers Paracaudina chilensis and Holothuria hilla: Structures and Anticoagulant Activity
title_sort fucosylated chondroitin sulfates from the sea cucumbers paracaudina chilensis and holothuria hilla: structures and anticoagulant activity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7693656/
https://www.ncbi.nlm.nih.gov/pubmed/33126758
http://dx.doi.org/10.3390/md18110540
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