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Blue fluorescent dye-protein complexes based on fluorogenic cyanine dyes and single chain antibody fragments.

机译:基于荧光花青染料和单链抗体片段的蓝色荧光染料-蛋白质复合物。

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摘要

Fluoromodules are complexes formed upon the noncovalent binding of a fluorogenic dye to its cognate biomolecular partner, which significantly enhances the fluorescence quantum yield of the dye. Previously, several single-chain, variable fragment (scFv) antibodies were selected from a yeast cell surface-displayed library that activated fluorescence from a family of unsymmetrical cyanine dyes covering much of the visible and near-IR spectrum. The current work expands our repertoire of genetically encodable scFv-dye pairs by selecting and characterizing a group of scFvs that activate fluorogenic violet-absorbing, blue-fluorescing cyanine dyes, based on oxazole and thiazole heterocycles. The dye binds to both yeast cell surface-displayed and soluble scFvs with low nanomolar K(d) values. These dye-protein fluoromodules exhibit high quantum yields, approaching unity for the brightest system. The promiscuity of these scFvs with other fluorogenic cyanine dyes was also examined. Fluorescence microscopy demonstrates that the yeast cell surface-displayed scFvs can be used for multicolor imaging. The prevalence of 405 nm lasers on confocal imaging and flow cytometry systems make these new reagents potentially valuable for cell biological studies.
机译:荧光模块是在荧光染料与其同源生物分子伴侣非共价结合后形成的复合物,可显着提高染料的荧光量子产率。以前,从酵母细胞表面展示的文库中选择了几种单链可变片段(scFv)抗体,该文库激活了来自不对称花青染料家族的荧光,覆盖了大部分可见光和近红外光谱。当前的工作通过选择和表征一组可激活基于恶唑和噻唑杂环的吸收紫色,蓝色荧光的花青染料的scFv,扩展了我们的可遗传编码scFv-染料对的范围。该染料以低纳摩尔K(d)值与酵母细胞表面展示的可溶性scFvs结合。这些染料-蛋白质氟模块显示出高的量子产率,对于最亮的系统接近统一。还检查了这些scFv与其他荧光花青染料的混杂。荧光显微镜显示酵母细胞表面展示的scFvs可用于多色成像。共焦成像和流式细胞仪系统上普遍使用405 nm激光,这些新试剂对于细胞生物学研究具有潜在的价值。

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