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用于探索多价体系结合位点拓扑结构的构象明确的自旋标记物。

Conformationally Unambiguous Spin Label for Exploring the Binding Site Topology of Multivalent Systems.

作者信息

Weickert Sabrina, Seitz Torben, Myers William K, Timmel Christiane R, Drescher Malte, Wittmann Valentin

机构信息

Department of Chemistry and Konstanz Research School Chemical Biology (KoRS-CB) , University of Konstanz , 78457 Konstanz , Germany.

Department of Chemistry and Centre for Advanced Electron Spin Resonance (CAESR) , University of Oxford , South Parks Road , Oxford OX1 3QR , United Kingdom.

出版信息

J Phys Chem Lett. 2018 Oct 18;9(20):6131-6135. doi: 10.1021/acs.jpclett.8b02243. Epub 2018 Oct 10.

Abstract

Multivalent carbohydrate-lectin interactions are a key concept in biological processes mediating, for example, signaling and adhesion. Binding affinities of multivalent ligands often increase by orders of magnitude compared to a monovalent binding situation. Thus, the design of multivalent ligands as potent inhibitors is a highly active field of research, where knowledge about the binding site topology is crucial. Here, we report a general strategy for precise distance measurements between the binding sites of multivalent target proteins using monovalent ligands. We designed and synthesized Monovalent, conformationally Unambiguously Spin-labeled LIgands (MUeSLI). Distances between the binding sites of the multivalent model lectin wheat germ agglutinin in complex with a GlcNAc-derived MUeSLI were determined using pulsed electron paramagnetic resonance spectroscopy. This approach is an efficient method for exploring multivalent systems with monovalent ligands, and it is readily transferable to other target proteins, allowing the targeted design of multivalent ligands without structural information available.

摘要

多价碳水化合物-凝集素相互作用是生物过程中的一个关键概念,介导例如信号传导和粘附等过程。与单价结合情况相比,多价配体的结合亲和力通常会增加几个数量级。因此,设计作为强效抑制剂的多价配体是一个高度活跃的研究领域,其中关于结合位点拓扑结构的知识至关重要。在此,我们报告了一种使用单价配体精确测量多价靶蛋白结合位点之间距离的通用策略。我们设计并合成了单价、构象明确的自旋标记配体(MUeSLI)。使用脉冲电子顺磁共振光谱法测定了多价模型凝集素麦胚凝集素与源自GlcNAc的MUeSLI复合物中结合位点之间的距离。这种方法是用单价配体探索多价系统的有效方法,并且很容易转移到其他靶蛋白上,无需可用的结构信息即可进行多价配体的靶向设计。

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