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鳗肌肉来源的胆红素诱导型荧光蛋白。

A bilirubin-inducible fluorescent protein from eel muscle.

机构信息

Cell Function Dynamics, Brain Science Institute, RIKEN, 2-1 Hirosawa, Wako-city, Saitama 351-0198, Japan.

出版信息

Cell. 2013 Jun 20;153(7):1602-11. doi: 10.1016/j.cell.2013.05.038. Epub 2013 Jun 13.

Abstract

The fluorescent protein toolbox has revolutionized experimental biology. Despite this advance, no fluorescent proteins have been identified from vertebrates, nor has chromogenic ligand-inducible activation or clinical utility been demonstrated. Here, we report the cloning and characterization of UnaG, a fluorescent protein from Japanese eel. UnaG belongs to the fatty-acid-binding protein (FABP) family, and expression in eel is restricted to small-diameter muscle fibers. On heterologous expression in cell lines or mouse brain, UnaG produces oxygen-independent green fluorescence. Remarkably, UnaG fluorescence is triggered by an endogenous ligand, bilirubin, a membrane-permeable heme metabolite and clinical health biomarker. The holoUnaG structure at 1.2 Å revealed a biplanar coordination of bilirubin by reversible π-conjugation, and we used this high-affinity and high-specificity interaction to establish a fluorescence-based human bilirubin assay with promising clinical utility. UnaG will be the prototype for a versatile class of ligand-activated fluorescent proteins, with applications in research, medicine, and bioengineering.

摘要

荧光蛋白工具包彻底改变了实验生物学。尽管取得了这一进展,但尚未从脊椎动物中鉴定出荧光蛋白,也未证明显色配体诱导激活或临床应用。在这里,我们报告了日本鳗鲡中一种荧光蛋白 UnaG 的克隆和特性。UnaG 属于脂肪酸结合蛋白 (FABP) 家族,在鳗鲡中的表达仅限于小直径肌纤维。在细胞系或小鼠脑中的异源表达中,UnaG 产生与氧无关的绿色荧光。值得注意的是,UnaG 荧光由内源性配体胆红素触发,胆红素是一种膜通透的血红素代谢物和临床健康生物标志物。1.2Å 的 holoUnaG 结构揭示了胆红素通过可逆π共轭的双平面配位,我们利用这种高亲和力和高特异性相互作用,建立了一种基于荧光的具有潜在临床应用价值的人胆红素测定法。UnaG 将成为一类多功能配体激活荧光蛋白的原型,可应用于研究、医学和生物工程。

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