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用于与生物活性肽进行基于半胱氨酸的光敏交联的双功能偶氮苯糖缀合物的合成

Synthesis of Bifunctional Azobenzene Glycoconjugates for Cysteine-Based Photosensitive Cross-Linking with Bioactive Peptides.

作者信息

Müller Anne, Kobarg Hauke, Chandrasekaran Vijayanand, Gronow Joana, Sönnichsen Frank D, Lindhorst Thisbe K

机构信息

Otto Diels Institute of Organic Chemistry, Christiana Albertina University of Kiel, Otto-Hahn-Platz 3/4, 24118 Kiel (Germany), Fax: (+49) 431-8807410.

出版信息

Chemistry. 2015 Sep 21;21(39):13723-31. doi: 10.1002/chem.201501571. Epub 2015 Aug 6.

Abstract

Azobenzene linker molecules can be utilized to control peptide/protein function when they are ligated to appropriately spaced amino acid side chains of the peptide. This is because the photochemical E/Z isomerization of the azobenzene N=N double bond allows to switch peptide conformation between folded and unfolded. In this context, we have introduced carbohydrate-functionalized azobenzene derivatives in order to advance the biocompatible properties of azobenzene peptide linkers. Chloroacetamide-functionalized and O-allylated carbohydrate derivatives were synthesized and conjugated with azobenzene to achieve new bifunctional cross-linkers, in order to allow ligation to cysteine side chains by nucleophilic substitution or thiol-ene reaction, respectively. The photochromic properties of the new linker glycoconjugates were determined and first ligation reactions performed.

摘要

当偶氮苯连接分子连接到肽链上适当间隔的氨基酸侧链时,可用于控制肽/蛋白质的功能。这是因为偶氮苯N=N双键的光化学E/Z异构化能够在折叠和未折叠的肽构象之间进行切换。在此背景下,我们引入了碳水化合物功能化的偶氮苯衍生物,以提升偶氮苯肽连接体的生物相容性。合成了氯乙酰胺功能化和O-烯丙基化的碳水化合物衍生物,并将其与偶氮苯共轭,以制备新的双功能交联剂,从而分别通过亲核取代或硫醇-烯反应连接到半胱氨酸侧链上。测定了新型连接体糖缀合物的光致变色性质,并进行了首次连接反应。

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