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The Effect of Fluorophore Conjugation on Antibody Affinity and the Photophysical Properties of Dyes

机译:荧光团缀合对染料抗体亲和力的影响及染料的光物理性质

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摘要

Because the degree of labeling DOL) of cell-bound antibodies, often required in quantitative fluorescence measurements, is largely unknown, we investigated the effect of labeling with two different fluorophores AlexaFluor546, AlexaFluor647) in a systematic way using antibody stock solutions with different DOLs. Here, we show that the mean DOL of the cell-bound antibody fraction is lower than that of the stock using single molecule fluorescence measurements. The effect is so pronounced that the mean DOL levels off at approximately two fluorophores/IgG for some antibodies. We developed a method for comparing the average DOL of antibody stocks to that of the isolated, cell-bound fraction based on fluorescence anisotropy measurements confirming the aforementioned conclusions. We created a model in which individual antibody species with different DOLs, present in an antibody stock solution, were assumed to have distinct affinities and quantum yields. The model calculations confirmed that a calibration curve constructed from the anisotropy of antibody stocks can be used for determining the DOL of the bound fraction. The fluorescence intensity of the cell-bound antibody fractions and of the antibody stocks exhibited distinctly different dependence on the DOL. The behavior of the two dyes was systematically different in this respect. Fitting of the model to these data revealed that labeling with each dye affects quantum yield and antibody affinity differentially. These measurements also implied that fluorophores in multiply labeled antibodies exhibit self-quenching and lead to decreased antibody affinity, conclusions directly confirmed by steady-state intensity measurements and competitive binding assays. Although the fluorescence lifetime of antibodies labeled with multiple fluorophores decreased, the magnitude of this change was not sufficient to account for self-quenching indicating that both dynamic and static quenching processes occur involving H-aggregate formation. Our results reveal multiple effects of fluorophore conjugation, which must not be overlooked in quantitative cell biological measurements.
机译:由于在定量荧光测量中通常需要的细胞结合抗体的标记DOL的程度主要是未知的,我们研究了用不同DOL的抗体储备溶液的系统方式调查标记用两种不同的荧光团Alexafluor546,Alexafluor647)的效果。这里,我们表明细胞结合抗体级分的平均DOL低于使用单分子荧光测量的股票的平均DOL。该效果如此明显,即在大约两种荧光团/ IgG的平均DOL水平为一些抗体。我们开发了一种用于将抗体股平均DOL对分离的细胞结合级分的平均DOL的方法基于证实上述结论的荧光各向异性测量来比较。我们创建了一种模型,其中假设抗体储备溶液中存在不同DOL的单个抗体物种具有不同的亲和力和量子产率。模型计算证实,从抗体股票各向异性构成的校准曲线可用于确定结合级分的DOL。细胞结合抗体级分和抗体股的荧光强度表现出明显不同的DOL依赖性。在这方面,两种染料的行为在系统地不同。将模型的拟合拟合显示与每种染料的标记会影响量子产率和抗体亲和力差异。这些测量还暗示乘法标记抗体中的荧光团表现出自猝灭并导致抗体亲和力降低,结论通过稳态强度测量和竞争性结合测定直接证实。尽管用多个荧光团标记的抗体的荧光寿命减少,但是这种变化的大小不足以解释自猝灭,表明涉及H-骨料形成的动态和静态猝灭过程。我们的结果揭示了荧光团共轭的多种效果,这不能在定量细胞生物测量中被忽略。

著录项

  • 来源
    《Biophysical Journal》 |2018年第3期|共13页
  • 作者单位

    Univ Debrecen Fac Med Dept Biophys &

    Cell Biol Debrecen Hungary;

    Univ Debrecen Fac Med Dept Biophys &

    Cell Biol Debrecen Hungary;

    Univ Debrecen Fac Med Dept Biophys &

    Cell Biol Debrecen Hungary;

    Univ Debrecen Fac Med Dept Biophys &

    Cell Biol Debrecen Hungary;

    Univ Debrecen Fac Med Dept Biophys &

    Cell Biol Debrecen Hungary;

    Univ Debrecen Fac Med Dept Biophys &

    Cell Biol Debrecen Hungary;

    Univ Debrecen Fac Med Dept Biophys &

    Cell Biol Debrecen Hungary;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物物理学;
  • 关键词

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