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A bilirubin-inducible fluorescent protein from eel muscle

机译:鳗鱼肌肉中胆红素诱导的荧光蛋白

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Summary 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 ? 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.
机译:小结荧光蛋白工具箱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,也未证明生色配体诱导的激活或临床应用。在这里,我们报道了来自鳗鱼的荧光蛋白UnaG的克隆和鉴定。 UnaG属于脂肪酸结合蛋白(FABP)家族,在鳗鱼中的表达仅限于小直径的肌肉纤维。在细胞系或小鼠大脑中异源表达时,UnaG产生不依赖氧的绿色荧光。值得注意的是,UnaG荧光是由内源性配体胆红素,可透过膜的血红素代谢物和临床健康生物标志物触发的。全息结构在1.2?通过可逆π偶联揭示了胆红素的双平面配位,我们使用这种高亲和力和高特异性相互作用建立了具有前景的临床实用性的基于荧光的人胆红素测定法。 UnaG将成为一类通用的配体激活的荧光蛋白的原型,并将应用于研究,医学和生物工程领域。

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