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作为糖胺聚糖生物合成引发剂的“点击”木糖苷:单木糖苷与木二糖的比较

'Click'-xylosides as initiators of the biosynthesis of glycosaminoglycans: Comparison of mono-xylosides with xylobiosides.

作者信息

Chatron-Colliet Aurore, Brusa Charlotte, Bertin-Jung Isabelle, Gulberti Sandrine, Ramalanjaona Nick, Fournel-Gigleux Sylvie, Brézillon Stéphane, Muzard Murielle, Plantier-Royon Richard, Rémond Caroline, Wegrowski Yanusz

机构信息

CNRS UMR 7369, Matrice Extracellulaire et Dynamique Cellulaire, UFR de Médecine, Université de Reims Champagne Ardenne, Reims Cedex, France.

Laboratoire de Biochimie Médicale et Biologie Moléculaire, UFR de Médecine, Université de Reims Champagne Ardenne, Reims Cedex, France.

出版信息

Chem Biol Drug Des. 2017 Mar;89(3):319-326. doi: 10.1111/cbdd.12865. Epub 2016 Nov 2.

Abstract

Different mono-xylosides and their corresponding xylobiosides obtained by a chemo-enzymatic approach featuring various substituents attached to a triazole ring were probed as priming agents for glycosaminoglycan (GAG) biosynthesis in the xylosyltransferase-deficient pgsA-745 Chinese hamster ovary cell line. Xylosides containing a hydrophobic aglycone moiety were the most efficient priming agents. Mono-xylosides induced higher GAG biosynthesis in comparison with their corresponding xylobiosides. The influence of the degree of polymerization of the carbohydrate part on the priming activity was investigated through different experiments. We demonstrated that in case of mono-xylosides, the cellular uptake as well as the affinity and the catalytic efficiency of β-1,4-galactosyltransferase 7 were higher than for xylobiosides. Altogether, these results indicate that hydrophobicity of the aglycone and degree of polymerization of glycone moiety were critical factors for an optimal priming activity for GAG biosynthesis.

摘要

通过化学酶法获得的带有连接在三唑环上的各种取代基的不同单木糖苷及其相应的木二糖苷,被用作木糖基转移酶缺陷型pgsA - 745中国仓鼠卵巢细胞系中糖胺聚糖(GAG)生物合成的引发剂进行研究。含有疏水苷元部分的木糖苷是最有效的引发剂。与相应的木二糖苷相比,单木糖苷诱导更高的GAG生物合成。通过不同实验研究了碳水化合物部分聚合度对引发活性的影响。我们证明,对于单木糖苷,其细胞摄取以及β-1,4-半乳糖基转移酶7的亲和力和催化效率均高于木二糖苷。总之,这些结果表明苷元的疏水性和糖部分的聚合度是GAG生物合成最佳引发活性的关键因素。

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