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将天然受体蛋白与人工受体偶联,以提供一种半合成荧光生物传感器。

Coupling a natural receptor protein with an artificial receptor to afford a semisynthetic fluorescent biosensor.

作者信息

Nakata Eiji, Nagase Tsuyoshi, Shinkai Seiji, Hamachi Itaru

机构信息

Department of Chemistry and Biochemistry, Graduate School of Engineering, Kyushu University, Fukuoka 812-8581 Japan.

出版信息

J Am Chem Soc. 2004 Jan 21;126(2):490-5. doi: 10.1021/ja035631i.

Abstract

An artificial receptor and a signal transducer have been engineered on a lectin (saccharide-binding protein) surface by a post-photoaffinity labeling modification method. Saccharide binding can be directly and selectively read out by the fluorescence changes of the fluorophore via photoinduced electron transfer (PET) mode. Fluorescence titration with various saccharides reveals that molecular recognition by the artificial receptor is successfully coupled to the native binding site of the lectin, producing a novel fluorescent saccharide biosensor showing modulated specificity and enhanced affinity. Designed cooperativity between artificial and native molecular recognition modules was quantitatively demonstrated by the comparison of the binding affinities, and it represents a new strategy in molecular recognition. By using appropriate artificial receptors and various native lectins, this approach may provide many new semisynthetic biosensors for saccharide derivatives such as glycolipids and glycopeptides/proteins. An extended library of lectin-based biosensors is envisioned to be useful for glycome research, a newly emerging field of the post-genomic era.

摘要

通过光亲和标记后修饰方法,在凝集素(糖结合蛋白)表面构建了人工受体和信号转导器。通过光诱导电子转移(PET)模式,荧光团的荧光变化可直接且选择性地读出糖结合情况。用各种糖类进行荧光滴定表明,人工受体的分子识别成功地与凝集素的天然结合位点相耦合,产生了一种新型荧光糖生物传感器,其具有调节后的特异性和增强的亲和力。通过比较结合亲和力,定量证明了人工和天然分子识别模块之间设计的协同性,这代表了分子识别中的一种新策略。通过使用合适的人工受体和各种天然凝集素,这种方法可能为糖脂和糖肽/蛋白质等糖类衍生物提供许多新型半合成生物传感器。预计基于凝集素的生物传感器扩展文库将有助于糖组学研究,这是后基因组时代一个新兴的领域。

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