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人工金属糖簇:紧密的糖壳可诱导高凝集素亲和力及强发光性。

Artificial metalloglycoclusters: compact saccharide shell to induce high lectin affinity as well as strong luminescence.

作者信息

Hasegawa Teruaki, Yonemura Takahiro, Matsuura Kazunori, Kobayashi Kazukiyo

机构信息

Department of Molecular Design, Graduate School of Engineering, Nagoya University, Chikusa, Nagoya 464-8603, Japan.

出版信息

Bioconjug Chem. 2003 Jul-Aug;14(4):728-37. doi: 10.1021/bc020026a.

Abstract

Tris-bipyridine ferrous and ruthenium complexes carrying various saccharide appendages have been investigated to develop sensory systems for monitoring saccharide-binding phenomena. Ferrous O-glycoclusters having spacer moieties inserted between saccharide appendages and the complex core showed enhanced affinities to lectins, but ferrous N-glycoclusters, in which the saccharide-appendages are directly linked to the complex core via amide linkage, had low lectin-affinities. Molecular dynamics calculation indicated that the O-glycoclusters have flexible and densely packed saccharide clusters, in contrast to the octahedrally fixed saccharide arrays of N-glycoclusters. Flexibility of saccharide clusters is essential for their enhanced affinity, probably to induce conformational change to fit the recognition sites of lectins. According to these insights, ruthenium O-glycoclusters have been designed as luminescence biosensors. The ruthenium complexes carrying alpha-manno clusters exhibited excellent affinities (IC(min) = 9.0 x 10(-)(8) M) to concanavalin A (ConA). It is suggested from conformational analysis that densely packed mannoclusters can be fit properly to the recognition site of ConA. The binding was enthalpicaly driven (deltaH degrees = -21.8 kcal/mol). This binding behavior is quite similar to that of 1-3/1-6 trimannoside to ConA. They have strongly amplified luminescence (Phi(em) = 0.15), and their luminescence intensities were changed (approximately 40%) upon binding to the specific lectins. The ruthenium glycoclusters can be a suitable sensory system for saccharide-binding phenomena.

摘要

人们对带有各种糖类附属物的三联吡啶亚铁和钌配合物进行了研究,以开发用于监测糖类结合现象的传感系统。在糖类附属物与配合物核心之间插入间隔基团的亚铁O-糖簇对凝集素表现出增强的亲和力,但糖类附属物通过酰胺键直接与配合物核心相连的亚铁N-糖簇对凝集素的亲和力较低。分子动力学计算表明,与N-糖簇的八面体固定糖类阵列不同,O-糖簇具有灵活且紧密堆积的糖类簇。糖类簇的灵活性对于其增强的亲和力至关重要,可能是为了诱导构象变化以适应凝集素的识别位点。基于这些见解,钌O-糖簇已被设计为发光生物传感器。携带α-甘露糖簇的钌配合物对伴刀豆球蛋白A(ConA)表现出优异的亲和力(IC(min)=9.0×10(-)(8)M)。构象分析表明,紧密堆积的甘露糖簇可以很好地适配ConA的识别位点。这种结合是由焓驱动的(ΔH°=-21.8 kcal/mol)。这种结合行为与1-3/1-6三甘露糖苷与ConA的结合行为非常相似。它们具有强烈增强的发光(Φ(em)=0.15),并且在与特定凝集素结合时其发光强度发生变化(约40%)。钌糖簇可以是用于糖类结合现象的合适传感系统。

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