Nakata Eiji, Koshi Yoichiro, Koga Erina, Katayama Yoshiki, Hamachi Itaru
Department of Synthetic Chemistry and Biological Chemistry, Kyoto University, Nishikyo-ku, Kyoto 615-8510, Japan.
J Am Chem Soc. 2005 Sep 28;127(38):13253-61. doi: 10.1021/ja052731a.
The site-selective incorporation of two different fluorophores into a naturally occurring protein (lectin, a sugar-binding protein) has been successfully carried out using two distinct orthogonal chemical methods. By post-photoaffinity labeling modification, Con A, a glucose- and mannose-selective lectin, was modified with fluorescein in the proximity of the sugar binding site (Tyr100 site), and the controlled acylation reaction provided the site-selective attachment of coumarin at Lys114. In this doubly modified Con A, the fluorescein emission changed upon the binding to the corresponding sugars, such as the glucose or mannose derivatives, whereas the coumarin emission was constant. Thus, the doubly modified Con A fluorescently sensed the glucose- and mannose-rich saccharides in a ratiometric manner while retaining the natural binding selectivity and affinity, regardless of the double modification. On the benefit of the ratiometric fluorescent analysis using two distinct probes, the sugar trimming process of a glycoprotein can be precisely monitored by the engineered Con A. Furthermore, the doubly modified Con A can be used not only for the convenient fluorescent imaging of saccharides localized on a cell surface, such as the MCF-7, a breast cancer cell having rich high-mannose branch, but also for the ratiometric fluorescent sensing of the glucose concentration inside HepG2 cells. These results demonstrated that the semisynthetic lectin modified doubly by two distinct chemistries is superior to the singly modified one in function, and thus, it may be potentially useful in cell, as well as in test tube.
利用两种不同的正交化学方法,已成功地将两种不同的荧光团位点选择性地掺入天然存在的蛋白质(凝集素,一种糖结合蛋白)中。通过光亲和标记后修饰,在糖结合位点(Tyr100位点)附近用荧光素修饰了对葡萄糖和甘露糖具有选择性的凝集素Con A,并且可控的酰化反应实现了香豆素在Lys114位点的位点选择性连接。在这种双重修饰的Con A中,荧光素的发射在与相应糖类(如葡萄糖或甘露糖衍生物)结合时发生变化,而香豆素的发射保持恒定。因此,这种双重修饰的Con A以比率方式荧光检测富含葡萄糖和甘露糖的糖类,同时保留天然的结合选择性和亲和力,而不受双重修饰的影响。基于使用两种不同探针的比率荧光分析的优势,工程化的Con A可以精确监测糖蛋白的糖修剪过程。此外,这种双重修饰的Con A不仅可用于对细胞表面定位的糖类(如具有丰富高甘露糖分支的乳腺癌细胞MCF-7)进行便捷的荧光成像,还可用于对HepG2细胞内葡萄糖浓度进行比率荧光传感。这些结果表明,通过两种不同化学方法双重修饰的半合成凝集素在功能上优于单一修饰的凝集素,因此,它在细胞以及试管实验中可能具有潜在的用途。